{"title":"Magnetic Metal Complexes","description":"\u003cp\u003e\u003cstrong\u003eMagnetic Metal Complexes\u003c\/strong\u003e — menghimpun kompleks logam transisi paramagnetik dari berbagai kelas ligan—β-diketonato, ditiokarbamato, ditiolena, ftalosianin, dan porfirin—yang menunjukkan sifat magnetik khas akibat elektron tak berpasangan pada pusat logamnya.\u003c\/p\u003e\u003cp\u003eKompleks-kompleks ini dipelajari dalam riset material magnet molekuler, magnet mononuklir tunggal (single-molecule magnet), serta karakterisasi sifat spin dan interaksi magnetik antar pusat logam. Peneliti kimia anorganik dan fisika material memanfaatkannya sebagai model sistem untuk memahami hubungan struktur ligan dengan perilaku magnetik.\u003c\/p\u003e\u003cp\u003eContoh produk dalam koleksi ini: \u003ca href=\"\/en\/products\/tci2510v001656423\"\u003eTCI V0016 3153-26-2 Bis(2,4-pentanedionato)vanadium(IV) Oxide\u003c\/a\u003e, \u003ca href=\"\/en\/products\/tci2510b573212458\"\u003eTCI B5732 176763-62-5 (R,R)-N,N'-Bis(3,5-di-tert-butylsalicylidene)-1,2-cyclohexanediaminocobalt(II)\u003c\/a\u003e, \u003ca href=\"\/en\/products\/tci2510t438056140\"\u003eTCI T4380 13476-99-8 Vanadium(III) Acetylacetonate\u003c\/a\u003e, \u003ca href=\"\/en\/products\/tci2510c033614408\"\u003eTCI C0336 21679-31-2 Tris(2,4-pentanedionato)chromium(III)\u003c\/a\u003e, \u003ca href=\"\/en\/products\/tci2510t320554772\"\u003eTCI T3205 87314-12-3 Tetrabutylammonium Bis(3,4,6-trichloro-1,2-benzenedithiolato)nickelate\u003c\/a\u003e, \u003ca href=\"\/en\/products\/tci2510c037314455\"\u003eTCI C0373 123334-29-2 Bis(2,4-pentanedionato)cobalt(II) Dihydrate\u003c\/a\u003e, \u003ca href=\"\/en\/products\/tci2510t168652949\"\u003eTCI T1686 14405-49-3 Tris(dibenzoylmethanato) Iron(III)\u003c\/a\u003e, \u003ca href=\"\/en\/products\/tci2510c038414469\"\u003eTCI C0384 13395-16-9 Bis(2,4-pentanedionato)copper(II)\u003c\/a\u003e.\u003c\/p\u003e\u003cp\u003ePerhatikan jenis ligan pengoordinasi, tingkat oksidasi dan geometri koordinasi logam, serta kemurnian kristal karena sifat magnetik sangat sensitif terhadap struktur molekul. Seluruh produk merupakan produk asli Tokyo Chemical Industry (TCI) Jepang, dengan kemurnian, kemasan, dan kondisi penyimpanan tercantum pada halaman masing-masing item.\u003c\/p\u003e\u003cp\u003eKategori lain yang sejajar di bawah Magnetic Materials, sering dipakai bersamaan dalam satu alur kerja laboratorium:\u003c\/p\u003e\u003cul\u003e\n\u003cli\u003e\u003ca href=\"\/en\/collections\/tci-l3-organic-radicals-magnetic-materials\"\u003eOrganic Radicals [Magnetic Materials]\u003c\/a\u003e\u003c\/li\u003e\n\u003cli\u003e\u003ca href=\"\/en\/collections\/reagen-polimer-dan-makromolekul\"\u003eReagen Polimer \u0026amp; Makromolekul\u003c\/a\u003e\u003c\/li\u003e\n\u003cli\u003e\u003ca href=\"\/en\/collections\/tci-l2-polymer-macromolecule-reagents\"\u003ePolymer\/Macromolecule Reagents\u003c\/a\u003e\u003c\/li\u003e\n\u003cli\u003e\u003ca href=\"\/en\/collections\/building-blocks-material-fungsional\"\u003eBuilding Blocks Material Fungsional\u003c\/a\u003e\u003c\/li\u003e\n\u003cli\u003e\u003ca href=\"\/en\/collections\/tci-l2-material-building-blocks\"\u003eMaterial Building Blocks\u003c\/a\u003e\u003c\/li\u003e\n\u003cli\u003e\u003ca href=\"\/en\/collections\/material-elektronik-organik\"\u003eMaterial Elektronik Organik\u003c\/a\u003e\u003c\/li\u003e\n\u003c\/ul\u003e\u003cp\u003eKoleksi ini masih terbagi menjadi 5 kelompok yang lebih spesifik:\u003c\/p\u003e\u003cul\u003e\n\u003cli\u003e\u003ca href=\"\/en\/collections\/tci-l4-diketonato-complexes-magnetic-metal-complexes\"\u003eβ-Diketonato Complexes [Magnetic Metal Complexes]\u003c\/a\u003e\u003c\/li\u003e\n\u003cli\u003e\u003ca href=\"\/en\/collections\/tci-l4-dithiolene-complexes-magnetic-metal-complexes\"\u003eDithiolene Complexes [Magnetic Metal Complexes]\u003c\/a\u003e\u003c\/li\u003e\n\u003cli\u003e\u003ca href=\"\/en\/collections\/tci-l4-phthalocyanine-complexes-porphyrin-complexes-magnetic-metal-complexes\"\u003ePhthalocyanine Complexes, Porphyrin Complexes [Magnetic Metal Complexes]\u003c\/a\u003e\u003c\/li\u003e\n\u003cli\u003e\u003ca href=\"\/en\/collections\/tci-l4-other-complexes-magnetic-metal-complexes\"\u003eOther Complexes [Magnetic Metal Complexes]\u003c\/a\u003e\u003c\/li\u003e\n\u003cli\u003e\u003ca href=\"\/en\/collections\/tci-l4-dithiocarbamato-complexes-magnetic-metal-complexes\"\u003eDithiocarbamato Complexes [Magnetic Metal Complexes]\u003c\/a\u003e\u003c\/li\u003e\n\u003c\/ul\u003e\u003cp\u003eKembali ke \u003ca href=\"\/en\/collections\/tci-l2-magnetic-materials\"\u003eMagnetic Materials\u003c\/a\u003e. Untuk pengadaan volume besar, kemasan khusus, atau grade tertentu, hubungi tim AMI Scientific — distributor resmi TCI Japan di Indonesia — untuk pengecekan ketersediaan dan lead time langsung ke Jepang.\u003c\/p\u003e","products":[{"product_id":"tci2510b573212458","title":"TCI B5732 176763-62-5 (R,R)-N,N'-Bis(3,5-di-tert-butylsalicylidene)-1,2-cyclohexanediaminocobalt(II)","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003e(R,R)-N,N'-Bis(3,5-di-tert-butylsalicylidene)-1,2-cyclohexanediaminocobalt(II) is a cobalt(II) salen complex commonly referred to as a Jacobsen-type catalyst, widely employed in C–H activation reactions and asymmetric catalysis. This chiral catalyst facilitates direct functionalization of unactivated carbon–hydrogen bonds and is also effective in enantioselective epoxidation and epoxide ring-opening reactions. It is a valuable reagent for synthetic organic chemistry laboratories working on pharmaceutical intermediates and fine chemical synthesis.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"5g","offer_id":48085899837658,"sku":"TCI2510B573212458","price":1591000.0,"currency_code":"IDR","in_stock":true},{"title":"25g","offer_id":48085899870426,"sku":"TCI2510B573212459","price":5932000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510B5732_33d79d36-3596-474e-aa43-15ed0e1fcec2.jpg?v=1767863128"},{"product_id":"tci2510c033614408","title":"TCI C0336 21679-31-2 Tris(2,4-pentanedionato)chromium(III)","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eTCI C0336 Tris(2,4-pentanedionato)chromium(III), CAS 21679-31-2, is the well-known chromium(III) acetylacetonate complex, an octahedral chelate with three acetylacetonate ligands. The chelate structure gives good stability and solubility in organic solvents, which makes it convenient to handle in synthetic and analytical work. It is widely used as a paramagnetic relaxation agent in quantitative NMR, as a homogeneous catalyst precursor, and as a metal source for thin film and materials preparation. AMI Scientific supplies this TCI product in 25 g and 100 g packs; weigh it in a fume hood and follow the manufacturer's Safety Data Sheet for handling and waste disposal.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"25g","offer_id":48085991227610,"sku":"TCI2510C033614408","price":758000.0,"currency_code":"IDR","in_stock":true},{"title":"100g","offer_id":48085991260378,"sku":"TCI2510C033614409","price":2045000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510C0336.jpg?v=1768816219"},{"product_id":"tci2510c037314455","title":"TCI C0373 123334-29-2 Bis(2,4-pentanedionato)cobalt(II) Dihydrate","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eTCI C0373 Bis(2,4-pentanedionato)cobalt(II) Dihydrate (CAS 123334-29-2), commonly known as cobalt(II) acetylacetonate dihydrate, is a coordination complex bearing two acetylacetonate ligands around a divalent cobalt centre. It is widely investigated as a precatalyst for C-H activation and other transformations where a redox-active, non-precious metal centre is desirable. The complex also serves as a convenient cobalt source for thin-film precursors and as a starting material for ligand-exchange synthesis. AMI Scientific supplies this TCI product in 25 g and 500 g packs for catalyst screening and repeated preparative work.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"25g","offer_id":48085994635482,"sku":"TCI2510C037314455","price":1944000.0,"currency_code":"IDR","in_stock":true},{"title":"500g","offer_id":48085994668250,"sku":"TCI2510C037314456","price":11962000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510C0373.jpg?v=1767095128"},{"product_id":"tci2510c038414469","title":"TCI C0384 13395-16-9 Bis(2,4-pentanedionato)copper(II)","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eTCI C0384 Bis(2,4-pentanedionato)copper(II), CAS 13395-16-9, is the well-known copper(II) acetylacetonate chelate used as a versatile copper source in synthesis and materials science. Its stable β-diketonate framework makes the complex convenient to weigh and dissolve, while the ligands are readily displaced once the active catalytic species forms. It is commonly applied as a catalyst precursor in copper-mediated coupling and C–H functionalisation studies, and as a precursor for copper-based thin films and nanoparticles. AMI Scientific supplies it in 25 g and 250 g packs; store in a tightly closed container in a cool, dry place.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"25g","offer_id":48085995159770,"sku":"TCI2510C038414469","price":607000.0,"currency_code":"IDR","in_stock":true},{"title":"250g","offer_id":48085995192538,"sku":"TCI2510C038414470","price":2500000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510C0384.jpg?v=1767095147"},{"product_id":"tci2510c298717900","title":"TCI C2987 14172-91-9 Copper(II) Tetraphenylporphyrin","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eCopper(II) Tetraphenylporphyrin is a chemical compound widely used in research applications within the fields of inorganic chemistry and catalysis. As a porphyrin complex containing the Cu²⁺ ion, it possesses a complex molecular structure and unique optical properties. This compound plays a significant role in laboratory settings, particularly in the study of chemical reactions and catalytic processes. Its ability to interact with various substrates makes it a valuable tool for researchers seeking to explore reaction mechanisms and electronic behavior.\u003c\/p\u003e\n\u003cp\u003eThe compound's unique electronic properties and reactivity make it a preferred choice for scientific investigations. Its porphyrin structure provides a stable framework that allows for precise control over electron transfer and chemical reactivity. These characteristics are essential for applications involving oxidation and reduction reactions. Additionally, the compound's sensitivity to moisture and UV light influences its handling and storage requirements, making it a specialized material in laboratory environments.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, Copper(II) Tetraphenylporphyrin is commonly used in research related to inorganic chemistry and catalysis. Its role in studying electron transfer and chemical reactivity makes it an important material for academic and industrial research. Researchers in Indonesia rely on this compound to advance their understanding of molecular behavior and catalytic processes, contributing to the development of new chemical methodologies and applications.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eOxidation and reduction reactions benefit from Copper(II) Tetraphenylporphyrin's ability to act as a catalyst, enhancing reaction efficiency and selectivity.\u003c\/li\u003e\n\u003cli\u003eElectron transfer studies utilize its unique electronic properties to investigate redox mechanisms and molecular interactions.\u003c\/li\u003e\n\u003cli\u003eCatalytic processes in organic synthesis leverage its reactivity to facilitate complex chemical transformations under controlled conditions.\u003c\/li\u003e\n\u003cli\u003ePhotophysical research explores its optical properties, making it ideal for studying light-induced chemical reactions and energy transfer.\u003c\/li\u003e\n\u003cli\u003eInorganic chemistry research uses the compound to study transition metal complexes and their structural and functional characteristics.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI\u003c\/li\u003e\n\u003cli\u003eCAS number: 14172-91-9\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Catalysis and Inorganic Chemistry \u0026gt; Transition Elements\u003c\/li\u003e\n\u003cli\u003ePack sizes: Not specified\u003c\/li\u003e\n\u003cli\u003ePhysical form: Not specified\u003c\/li\u003e\n\u003cli\u003eStorage note: Store in a dry, dark place away from moisture and UV light\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eCopper(II) Tetraphenylporphyrin should be stored in a cool, dry environment to prevent degradation due to moisture and UV exposure. It is recommended to use airtight containers made of inert materials such as glass or polyethylene to maintain its stability. Laboratory personnel should handle the compound with care, using appropriate personal protective equipment to minimize exposure. Due to its sensitivity, it should be kept away from light sources and stored in a secure location to prevent contamination. Regular monitoring of storage conditions is essential to ensure the compound remains effective for research applications.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"1g","offer_id":48086206251226,"sku":"TCI2510C298717900","price":4847000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510C2987.jpg?v=1768816979"},{"product_id":"tci2510c357918671","title":"TCI C3579 14172-90-8 Cobalt(II) Tetraphenylporphyrin","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eCobalt(II) Tetraphenylporphyrin is a chemical compound widely utilized in laboratory settings for its catalytic properties, particularly in C-H activation reactions. This compound plays a crucial role in organic and inorganic chemistry by facilitating the breaking and forming of carbon-hydrogen bonds under controlled conditions. Its unique molecular structure, based on a porphyrin ring, enables it to interact effectively with various substrates, making it a versatile tool for researchers. Due to its stability and reactivity, Cobalt(II) Tetraphenylporphyrin is a valuable asset in advanced chemical synthesis and catalytic processes.\u003c\/p\u003e\n\u003cp\u003eThe compound's porphyrin-based structure provides it with exceptional reactivity and stability under specific chemical conditions. Its ability to coordinate with metal ions, such as cobalt, enhances its catalytic efficiency, allowing it to participate in a wide range of reactions. This coordination capability makes it particularly effective in promoting selective transformations in complex chemical systems. Additionally, its thermal stability ensures that it remains functional across a broad range of experimental conditions, making it a reliable choice for laboratory use.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, Cobalt(II) Tetraphenylporphyrin is frequently employed in research focused on catalytic processes and organic synthesis. Its applications span across both academic and industrial research, where it is used to explore new reaction pathways and improve catalytic efficiency. Due to its unique properties, it is a preferred material for studies involving C-H activation, hydrodefunctionalization, and oxidation reactions. Its availability and performance make it a standard component in many chemical research projects in Indonesia.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eC-H Activation Reactions: Cobalt(II) Tetraphenylporphyrin is ideal for C-H activation due to its ability to facilitate the breaking of carbon-hydrogen bonds, making it suitable for complex organic transformations.\u003c\/li\u003e\n\u003cli\u003eHydrodefunctionalization Processes: This compound is well-suited for hydrodefunctionalization reactions because of its catalytic efficiency and ability to activate hydrocarbon substrates.\u003c\/li\u003e\n\u003cli\u003eOxidation Reactions: Its reactivity and coordination properties make it an effective catalyst in oxidation reactions, particularly in the presence of metal ions.\u003c\/li\u003e\n\u003cli\u003eOrganic Synthesis Research: The compound's stability and reactivity make it a preferred choice for organic synthesis experiments requiring precise control over reaction conditions.\u003c\/li\u003e\n\u003cli\u003eInorganic Chemistry Studies: Its ability to interact with metal ions enhances its utility in inorganic chemistry research, particularly in catalytic systems involving transition metals.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI\u003c\/li\u003e\n\u003cli\u003eCAS number: 14172-90-8\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Catalysis and Inorganic Chemistry \u0026gt; C-H Activation [Catalysis]\u003c\/li\u003e\n\u003cli\u003ePack sizes: Available in various quantities as per supplier specifications\u003c\/li\u003e\n\u003cli\u003ePhysical form: Powder or solid (as per product description)\u003c\/li\u003e\n\u003cli\u003eStorage note: Store in a cool, dry place away from light and moisture\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eCobalt(II) Tetraphenylporphyrin should be stored in a cool, dry environment, away from direct sunlight and sources of moisture. It is recommended to use airtight containers to prevent exposure to air and moisture, which may affect its stability. Due to its sensitivity to oxidation, it should be handled with care, ideally under an inert atmosphere if possible. In laboratory settings, it is important to use appropriate personal protective equipment, such as gloves and safety goggles, when handling this compound. Proper labeling of storage containers is also essential to ensure safe and efficient management of the material. Regular monitoring of storage conditions is advised to maintain the compound's integrity and effectiveness for research applications.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"1g","offer_id":48086266216666,"sku":"TCI2510C357918671","price":2524000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510C3579.jpg?v=1767099805"},{"product_id":"tci2510d048719942","title":"TCI D0487 13681-87-3 Copper(II) Diethyldithiocarbamate","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eCopper(II) Diethyldithiocarbamate is a chemical compound widely used in laboratory settings, particularly in catalysis and inorganic chemistry. It serves as both a catalyst and a reagent in reactions involving transition metals, especially copper. This compound plays a crucial role in facilitating chemical reactions by interacting with metal ions, thereby enhancing reaction efficiency. Its presence in the laboratory enables researchers to explore complex chemical transformations with greater control and precision.\u003c\/p\u003e\n\u003cp\u003eThe compound is valued for its chemical stability and high reactivity, which can be modulated based on environmental conditions. Its complex molecular structure allows it to interact with a variety of chemical substrates, making it a versatile tool in synthetic chemistry. The solubility of Copper(II) Diethyldithiocarbamate in organic solvents further enhances its usability across different experimental setups. These properties make it a preferred choice for applications requiring metal-based catalysts.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, Copper(II) Diethyldithiocarbamate is commonly used in research and development projects. It is particularly favored for its ability to accelerate specific chemical reactions, contributing to the advancement of new chemical products and processes. Its reliability and effectiveness in laboratory settings make it an essential component for chemists working in both academic and industrial environments.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eCatalytic reactions involving transition metals, as it effectively interacts with copper ions to enhance reaction rates.\u003c\/li\u003e\n\u003cli\u003eSynthesis of metal complexes, due to its ability to form stable coordination compounds with transition metals.\u003c\/li\u003e\n\u003cli\u003eOrganic synthesis processes where metal-mediated reactions are required, providing a reliable and efficient catalyst.\u003c\/li\u003e\n\u003cli\u003eAnalytical chemistry applications, where its reactivity aids in the detection and quantification of metal ions.\u003c\/li\u003e\n\u003cli\u003eResearch and development in chemical industries, supporting the creation of new compounds and materials.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI\u003c\/li\u003e\n\u003cli\u003eCAS number: 13681-87-3\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Catalysis and Inorganic Chemistry \u0026gt; Transition Elements\u003c\/li\u003e\n\u003cli\u003ePack sizes: Available in various quantities as per standard laboratory supply\u003c\/li\u003e\n\u003cli\u003ePhysical form: Solid powder\u003c\/li\u003e\n\u003cli\u003eStorage note: Store in a cool, dry place away from moisture and direct sunlight\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eCopper(II) Diethyldithiocarbamate should be stored in a cool, dry environment to maintain its chemical stability. It is recommended to keep it in airtight containers to prevent exposure to moisture and air, which could affect its reactivity. The compound should be stored away from direct sunlight and heat sources to avoid any potential degradation. In laboratory settings, it is important to handle the material with appropriate personal protective equipment, such as gloves and safety goggles, to ensure safe handling. Proper labeling of storage containers is essential to prevent accidental use or contamination. Regular monitoring of storage conditions ensures the compound remains effective for its intended applications.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"5g","offer_id":48086387065050,"sku":"TCI2510D048719942","price":834000.0,"currency_code":"IDR","in_stock":true},{"title":"25g","offer_id":48086387097818,"sku":"TCI2510D048719943","price":2853000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510D0487.jpg?v=1771058320"},{"product_id":"tci2510d102220724","title":"TCI D1022 137-29-1 Copper(II) Dimethyldithiocarbamate","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eCopper(II) Dimethyldithiocarbamate (CAS 137-29-1) is a chemical compound widely used in laboratory settings for its catalytic and reagent properties. As a transition metal complex, it plays a crucial role in catalytic reactions, especially in the field of inorganic chemistry. This compound is commonly employed in reactions involving copper-based catalysts, where it helps facilitate chemical transformations by lowering activation energy. Its versatility makes it an essential component in both organic and inorganic synthesis processes.\u003c\/p\u003e\n\u003cp\u003eThe compound's reactivity and structural complexity make it a preferred choice for applications requiring high specificity and efficiency. Its ability to interact with various molecules allows it to participate in a wide range of chemical reactions, making it valuable in both research and industrial contexts. Additionally, its solubility in organic solvents enhances its usability in diverse experimental setups. The compound's stability under certain conditions further supports its reliability in controlled laboratory environments.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, Copper(II) Dimethyldithiocarbamate is a key reagent for researchers working in catalysis and inorganic chemistry. Its role in facilitating complex reactions and its availability through suppliers like AMI Scientific make it a practical choice for both academic and industrial applications. Its use aligns with the growing demand for advanced chemical tools in the region’s scientific community.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eCatalytic Reactions in Organic Synthesis: Copper(II) Dimethyldithiocarbamate is used to facilitate complex organic reactions by acting as a catalyst, enhancing reaction rates without being consumed.\u003c\/li\u003e\n\u003cli\u003eInorganic Chemistry Research: The compound is valuable for studying transition metal-based reactions, particularly those involving copper, due to its reactivity and structural properties.\u003c\/li\u003e\n\u003cli\u003eCoordination Chemistry Studies: Its ability to form coordination complexes makes it ideal for experiments involving metal-ligand interactions and structural analysis.\u003c\/li\u003e\n\u003cli\u003eIndustrial Process Development: The compound is applied in the development of chemical processes where catalytic efficiency and reactivity are critical factors.\u003c\/li\u003e\n\u003cli\u003eAnalytical Chemistry Applications: It is used in analytical methods to detect and quantify copper-based compounds in various samples.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI\u003c\/li\u003e\n\u003cli\u003eCAS Number: 137-29-1\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Catalysis and Inorganic Chemistry \u0026gt; Transition Elements\u003c\/li\u003e\n\u003cli\u003ePack Sizes: Available in various quantities as per supplier specifications\u003c\/li\u003e\n\u003cli\u003ePhysical Form: Solid (as per standard product description)\u003c\/li\u003e\n\u003cli\u003eStorage Note: Store in a cool, dry place away from moisture and oxidizing agents\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eCopper(II) Dimethyldithiocarbamate should be stored in a cool, dry environment to prevent degradation due to moisture and oxidation. It is recommended to use airtight containers made of materials resistant to chemical interaction, such as glass or stainless steel. The compound is sensitive to humidity, so maintaining low moisture levels is essential. Laboratory personnel should handle the material with care, using appropriate personal protective equipment to ensure safety. It should be kept away from strong oxidizers and incompatible substances to avoid unwanted reactions. Proper labeling and storage conditions help maintain the compound's stability and effectiveness in experimental applications.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"25g","offer_id":48086418882778,"sku":"TCI2510D102220724","price":1718000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510D1022.jpg?v=1768817371"},{"product_id":"tci2510d126720980","title":"TCI D1267 14484-64-1 Iron(III) Dimethyldithiocarbamate","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eIron(III) Dimethyldithiocarbamate is a chemical compound widely used in scientific experiments, particularly in the fields of chemistry and materials science. This compound plays a crucial role in the synthesis of metal complexes, especially those with magnetic properties. Its unique structure, composed of an iron(III) ion and dithiocarbamate ligands, makes it a valuable tool for researchers working on magnetic materials. Due to its stability and controlled reactivity, it is frequently employed in laboratory settings to develop new materials with specific magnetic behaviors.\u003c\/p\u003e\n\u003cp\u003eThe compound's chemical stability under certain conditions, combined with its reactivity in various chemical reactions, makes it a preferred choice for material scientists. Its ability to form complexes with other metal ions enhances its utility in creating compounds with tailored magnetic properties. This versatility allows it to be used in a wide range of applications, from fundamental research to the development of advanced magnetic materials. Its predictable behavior and compatibility with different chemical environments further contribute to its popularity in laboratory settings.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, Iron(III) Dimethyldithiocarbamate is commonly used in research related to magnetic materials and chemical synthesis. Its availability in solid form and ease of handling make it a practical choice for researchers. It is often incorporated into experiments aimed at understanding the behavior of magnetic metal complexes, supporting both academic and industrial research initiatives in the field of materials science.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eMagnetic Material Synthesis: Iron(III) Dimethyldithiocarbamate is ideal for creating metal complexes with magnetic properties, supporting research in advanced materials.\u003c\/li\u003e\n\u003cli\u003eChemical Complex Formation: Its ability to bind with other metal ions makes it suitable for forming stable and reactive metal complexes in laboratory experiments.\u003c\/li\u003e\n\u003cli\u003eResearch in Magnetic Properties: The compound is used to study the behavior of magnetic materials, aiding in the development of new magnetic substances.\u003c\/li\u003e\n\u003cli\u003eEducational Experiments: It is frequently used in academic settings to teach students about coordination chemistry and magnetic material synthesis.\u003c\/li\u003e\n\u003cli\u003eIndustrial Material Development: Its stability and reactivity make it a valuable component in the production of magnetic compounds for industrial applications.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI\u003c\/li\u003e\n\u003cli\u003eCAS number: 14484-64-1\u003c\/li\u003e\n\u003cli\u003eCategory: Materials Science \u0026gt; Magnetic Materials \u0026gt; Magnetic Metal Complexes\u003c\/li\u003e\n\u003cli\u003ePack sizes: Available in various quantities as per standard laboratory supply\u003c\/li\u003e\n\u003cli\u003ePhysical form: Solid\u003c\/li\u003e\n\u003cli\u003eStorage note: Store in a cool, dry place away from moisture and direct sunlight\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eIron(III) Dimethyldithiocarbamate should be stored in a cool, dry environment to maintain its chemical stability. It is recommended to keep it in airtight containers to prevent exposure to moisture and air, which could affect its reactivity. Suitable storage conditions include a controlled temperature range, typically between 15°C and 25°C, to ensure long-term preservation. Laboratory personnel should handle the compound with care, using appropriate personal protective equipment such as gloves and safety goggles. It is important to avoid contact with incompatible substances and to follow standard safety protocols when working with this material. Proper storage and handling practices help maintain the compound's integrity and ensure safe usage in laboratory settings.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"25g","offer_id":48086432055514,"sku":"TCI2510D126720980","price":708000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510D1267.jpg?v=1769180522"},{"product_id":"tci2510d213422196","title":"TCI D2134 120141-26-6 Dioctadecyldimethylammonium Bis(1,3-dithiole-2-thione-4,5-dithiolato)aurate(III)","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eTCI D2134 Dioctadecyldimethylammonium Bis(1,3-dithiole-2-thione-4,5-dithiolato)aurate(III), CAS 120141-26-6, is a metal complex salt that combines a sulfur-rich dithiolate-ligated aurate(III) anion with a long-chain quaternary ammonium cation. This pairing produces a highly distinctive material: the anionic portion supplies a conjugated electronic system that serves as the pathway for charge transport, while the cationic portion, bearing two octadecyl chains, contributes amphiphilic character and solubility in organic solvents. In the laboratory, materials of this type are important research subjects in the study of molecular conductors and molecule-based electronics, where the relationship between molecular structure and electrical behaviour is examined in detail.\u003c\/p\u003e\n\u003cp\u003eThe property that makes this material a preferred choice is the ability of the dithiolate ligands to stabilise several oxidation states of the metal centre, so that its redox and conduction characteristics can be studied in depth rather than inferred indirectly. The long alkyl chains on the cation encourage ordered molecular arrangement in thin films, a characteristic that is highly valued in Langmuir-Blodgett film research and in work on organised thin layers. This amphiphilic character also makes it easier to form uniform layers on a substrate, which is an essential requirement for reliable and reproducible measurement work.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, a material of this kind is used chiefly in university and institutional research settings rather than in routine testing. It typically appears in materials science and physical chemistry groups working on molecular conductors, thin-film deposition, and the electronic characterisation of coordination compounds. Because it is a specialised research chemical, it is normally purchased in small quantities for defined experimental programmes, handled by trained personnel, and stored under conditions that preserve its integrity between experiments.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eMolecular conductor research — the conjugated dithiolate-aurate(III) anion provides the charge-transport pathway required to study conduction mechanisms in molecule-based systems.\u003c\/li\u003e\n\u003cli\u003eLangmuir-Blodgett film preparation — the two long octadecyl chains give the amphiphilic character needed to build ordered, transferable monolayers and multilayers on substrates.\u003c\/li\u003e\n\u003cli\u003eOrganised thin-film deposition — the amphiphilic structure promotes formation of uniform layers on substrate surfaces, an essential condition for reproducible film-based measurements.\u003c\/li\u003e\n\u003cli\u003eRedox behaviour studies — the dithiolate ligands stabilise multiple oxidation states of the gold centre, allowing electrochemical and redox properties to be examined thoroughly.\u003c\/li\u003e\n\u003cli\u003eMolecule-based electronics investigations — combining a conducting anion with an insulating organic cation makes this salt a useful model compound for structure-property correlation work.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI\u003c\/li\u003e\n\u003cli\u003eCAS number: 120141-26-6\u003c\/li\u003e\n\u003cli\u003eCategory: Materials Science \u0026gt; Electronic Materials \u0026gt; Molecular Conductors\u003c\/li\u003e\n\u003cli\u003eChemical class: metal complex salt (quaternary ammonium cation with dithiolate-ligated aurate(III) anion)\u003c\/li\u003e\n\u003cli\u003ePack sizes: available in research-scale pack sizes; please confirm the current packaging option when ordering\u003c\/li\u003e\n\u003cli\u003eStorage: store as indicated on the manufacturer's label and product documentation\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eStore the container tightly closed in a cool, dry, well-ventilated place, away from direct sunlight, moisture, and sources of heat or ignition, and follow the storage conditions stated on the manufacturer's label. Keep the material in its original container or in a clean, chemically compatible, well-sealed vessel that is clearly labelled with the product name and CAS number. Handle in a fume hood using standard laboratory personal protective equipment: safety glasses, gloves, and a laboratory coat. Avoid generating dust, avoid contact with skin and eyes, and wash hands thoroughly after handling. Because this is a specialised research chemical, consult the supplier's safety data sheet before use and dispose of residues and contaminated materials in accordance with applicable chemical waste procedures.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"100mg","offer_id":48086497263834,"sku":"TCI2510D213422196","price":1970000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510D2134.jpg?v=1768817581"},{"product_id":"tci2510h055333153","title":"TCI H0553 19648-83-0 Bis(hexafluoroacetylacetonato)cobalt(II)","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eTCI H0553 Bis(hexafluoroacetylacetonato)cobalt(II) is a cobalt(II) coordination complex in which two hexafluoroacetylacetonate ligands bind the central metal in a bidentate fashion through their oxygen atoms. Replacing the methyl groups of ordinary acetylacetonate with trifluoromethyl groups produces a markedly more electron-withdrawing ligand, so the resulting complex behaves quite differently from Co(acac)₂. In the laboratory, the compound serves as a cobalt source that dissolves readily in organic solvents, as a catalyst or precatalyst in C–H bond activation and radical reactions, and as a metal precursor for thin-film growth.\u003c\/p\u003e\n\u003cp\u003eThe properties that make hexafluoroacetylacetonate complexes a preferred choice are the increased Lewis acidity of the metal centre, good solubility in organic and supercritical solvents, and relatively high volatility for a metal compound of this size. The fluorinated ligands shield the metal centre both sterically and electronically, so the complex resists thermal decomposition more effectively, yet the ligands can still dissociate when a substrate coordinates. This combination yields a catalyst that is active at reasonable temperatures while remaining convenient to handle as a solid.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, this reagent is typically used in university and institutional research groups working on synthetic methodology, homogeneous catalysis, and materials chemistry. It is normally weighed out in small quantities for screening catalytic conditions, dissolved in an organic solvent, and applied in bench-scale reactions under an inert atmosphere. Groups engaged in thin-film and surface studies also employ it as a volatile metal precursor within deposition equipment, where its solubility and stability simplify handling.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eC–H bond activation catalysis: the electron-poor cobalt centre acts as a catalyst or precatalyst, and the fluorinated ligands dissociate readily once a substrate coordinates to the metal.\u003c\/li\u003e\n\u003cli\u003eRadical reaction chemistry: the cobalt(II) complex provides an accessible one-electron metal centre while its fluorinated ligand framework keeps the compound stable enough for routine bench use.\u003c\/li\u003e\n\u003cli\u003eThin-film deposition precursor: the relatively high volatility of the hexafluoroacetylacetonate complex makes it suitable as a cobalt source for growing cobalt-containing thin layers.\u003c\/li\u003e\n\u003cli\u003eHomogeneous catalysis method development: excellent solubility in organic solvents allows the compound to be introduced as a clean, well-defined cobalt source for reaction screening work.\u003c\/li\u003e\n\u003cli\u003eSupercritical fluid chemistry: solubility in supercritical solvents lets researchers deliver cobalt into media where conventional inorganic cobalt salts would remain insoluble.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI\u003c\/li\u003e\n\u003cli\u003eCAS number: 19648-83-0\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Catalysis and Inorganic Chemistry \u0026gt; C-H Activation [Catalysis]\u003c\/li\u003e\n\u003cli\u003ePack sizes: available in standard TCI catalogue pack sizes; please confirm the current listed size when ordering.\u003c\/li\u003e\n\u003cli\u003ePhysical form: solid metal complex, handled by weighing and dissolution in organic solvent.\u003c\/li\u003e\n\u003cli\u003eStorage: keep in a tightly closed container, protected from moisture.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eStore the container tightly closed in a cool, dry place away from moisture, since metal β-diketonate complexes are sensitive to humidity during prolonged storage. Original supplier bottles or tightly sealed glass containers with chemically resistant caps are appropriate; for the most demanding work, keep the material under an inert atmosphere or in a desiccator. Weigh and transfer the solid in a fume hood using clean, dry spatulas, and wear safety glasses, gloves, and a laboratory coat. Avoid generating dust, keep the compound away from heat sources, and consult the supplier safety data sheet before first use.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"5g","offer_id":48087220814042,"sku":"TCI2510H055333153","price":4013000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510H0553.jpg?v=1767116633"},{"product_id":"tci2510h055433154","title":"TCI H0554 14781-45-4 Bis(hexafluoroacetylacetonato)copper(II)","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eTCI H0554 Bis(hexafluoroacetylacetonato)copper(II) is a copper(II) complex in which the metal centre is surrounded by two bidentate hexafluoroacetylacetonate ligands coordinating through their donor oxygen atoms. The compound belongs to the family of fluorinated metal complexes that are well known in catalysis and materials chemistry, because fluorinated ligands modify the electronic character of the copper centre while at the same time increasing its volatility. In the laboratory it serves as a catalyst or precatalyst in carbene transfer reactions, cyclopropanation, C–H bond insertion and copper-mediated coupling reactions, and equally as a source of copper that dissolves readily in organic solvents.\u003c\/p\u003e\n\u003cp\u003eThe characteristics that make researchers select this complex begin with the high Lewis acidity of the copper centre, a direct consequence of the six fluorine atoms distributed across the two ligands, combined with thermal stability and the convenience of handling a solid material. Copper moves easily between the +1 and +2 oxidation states, which makes this complex an effective redox mediator across a wide range of organic transformations. The fluorinated ligands also render the complex comparatively volatile and soluble both in organic solvents and in supercritical carbon dioxide — two properties rarely found together in inorganic copper salts.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories this material is typically found in university research groups, government research institutes and industrial R\u0026amp;D units working on synthetic methodology, catalysis development and materials chemistry. It is normally purchased in small research quantities rather than bulk, weighed out on an analytical balance for reaction-scale work, and kept alongside other air-sensitive or moisture-sensitive organometallic reagents in a dedicated reagent store. Its solubility in organic media makes it straightforward to incorporate into standard Schlenk-line and glovebox workflows already established in such laboratories.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eCarbene transfer catalysis — the Lewis-acidic copper centre activates diazo compounds efficiently, and the electron-withdrawing fluorinated ligands help stabilise the reactive copper–carbene intermediates formed during the catalytic cycle.\u003c\/li\u003e\n\u003cli\u003eCyclopropanation of alkenes — this complex functions as a catalyst or precatalyst for constructing three-membered carbocycles, with good solubility in organic solvents ensuring a homogeneous reaction medium throughout.\u003c\/li\u003e\n\u003cli\u003eC–H bond insertion chemistry — the compound is applied in C–H activation work, the category under which it is classified, where the fluorinated ligand environment tunes the electronic demand at the copper centre.\u003c\/li\u003e\n\u003cli\u003eCopper-mediated coupling reactions — the ready interconversion between copper(I) and copper(II) oxidation states allows this complex to act as an effective redox mediator in coupling transformations.\u003c\/li\u003e\n\u003cli\u003eSoluble copper source for materials chemistry — the volatility conferred by the fluorinated ligands, along with solubility in supercritical carbon dioxide, suits applications where inorganic copper salts are unsuitable.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI (Tokyo Chemical Industry)\u003c\/li\u003e\n\u003cli\u003eCAS number: 14781-45-4\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Catalysis and Inorganic Chemistry \u0026gt; C-H Activation [Catalysis]\u003c\/li\u003e\n\u003cli\u003ePack sizes: supplied in standard TCI research-scale pack sizes; please confirm the available packaging when ordering\u003c\/li\u003e\n\u003cli\u003ePhysical form: solid, handled and weighed as a solid material\u003c\/li\u003e\n\u003cli\u003eStorage: keep in a cool, dry place in a tightly closed container, protected from moisture\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eStore the container tightly closed in a cool, dry and well-ventilated area, away from moisture and from incompatible materials. Original supplier packaging or a tightly sealed glass container with a chemically resistant closure is appropriate; for moisture-sensitive handling, transfer under an inert atmosphere using a glovebox or Schlenk line. Handle the solid inside a fume hood while wearing a laboratory coat, chemical-resistant gloves and safety goggles, and avoid generating or inhaling dust during weighing. Keep containers clearly labelled, close them promptly after use, and consult the manufacturer's safety data sheet before first use and for disposal guidance.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"1g","offer_id":48087220846810,"sku":"TCI2510H055433154","price":1112000.0,"currency_code":"IDR","in_stock":true},{"title":"5g","offer_id":48087220879578,"sku":"TCI2510H055433155","price":2828000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510H0554.jpg?v=1767116637"},{"product_id":"tci2510h055533156","title":"TCI H0555 17786-67-3 Tris(hexafluoroacetylacetonato)iron(III)","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eTCI H0555 Tris(hexafluoroacetylacetonato)iron(III) is an octahedral iron(III) complex in which three hexafluoroacetylacetonate ligands bind the metal centre in a bidentate fashion through their oxygen atoms. Because the iron sits in the +3 oxidation state, three anionic ligands are required to neutralise the charge, giving a neutral molecule that dissolves readily in organic solvents. In the laboratory this material serves as a catalyst and pre-catalyst for C–H bond activation reactions, oxidations, and iron-mediated radical transformations, and it has become an attractive alternative because iron is an abundant, comparatively inexpensive, and more benign metal than the noble metals it can replace.\u003c\/p\u003e\n\u003cp\u003eThe property that makes this complex a preferred choice is the influence of the eighteen fluorine atoms distributed across its three ligands, which withdraw electron density from the iron centre and markedly increase its Lewis acidity. As a consequence, the complex activates substrates and oxidants more readily than conventional Fe(acac)₃. The fluorinated ligand set also confers thermal stability, good solubility in organic solvents and in supercritical carbon dioxide, and sufficient volatility for vapour-phase applications. The iron(III) centre, with its accessible Fe(III)\/Fe(II) redox couple, further allows the compound to act as a mediator in single-electron processes.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, this reagent is typically requested by university research groups, national research institutes, and industrial R\u0026amp;D units working on catalysis and synthetic methodology. It is generally used at small scale on the bench for reaction screening and method development, where an earth-abundant metal catalyst is preferred over a precious-metal system. Because it belongs to the C–H activation and inorganic chemistry segment of the catalogue, it is usually ordered together with other complementary catalysts, ligands, and oxidants for a single project.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eC–H bond activation catalysis: the strongly Lewis acidic, electron-poor iron centre activates substrates more readily than conventional Fe(acac)₃, making it suitable for functionalising otherwise unreactive C–H positions.\u003c\/li\u003e\n\u003cli\u003eOxidation reactions: the accessible Fe(III)\/Fe(II) redox couple lets the complex engage oxidants efficiently, so it serves as a catalyst or pre-catalyst in oxidative transformations run on the bench.\u003c\/li\u003e\n\u003cli\u003eIron-mediated radical transformations: as a single-electron mediator, the iron(III) centre initiates and sustains radical processes where a cheap, abundant metal is preferred over noble-metal systems.\u003c\/li\u003e\n\u003cli\u003eSupercritical carbon dioxide chemistry: the fluorinated ligand shell gives good solubility in supercritical CO₂, allowing the complex to be carried into reaction or extraction systems using that medium.\u003c\/li\u003e\n\u003cli\u003eVapour-phase applications: adequate volatility combined with thermal stability from the eighteen fluorine atoms allows the neutral complex to be transported in the gas phase for deposition-type work.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI\u003c\/li\u003e\n\u003cli\u003eCAS number: 17786-67-3\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Catalysis and Inorganic Chemistry \u0026gt; C-H Activation [Catalysis]\u003c\/li\u003e\n\u003cli\u003eProduct code: H0555\u003c\/li\u003e\n\u003cli\u003ePack sizes: available in the catalogue pack sizes offered by TCI for this item; please confirm the size required when ordering\u003c\/li\u003e\n\u003cli\u003eStorage: store in a cool, dry place, tightly closed and protected from moisture\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eStore the container tightly closed in a cool, dry, well-ventilated area, away from moisture, strong oxidising agents, and direct sunlight. Keep the material in its original tightly sealed bottle or in a comparable chemically resistant container with a secure closure; because the fluorinated complex is volatile enough for vapour-phase use, containers should never be left open on the bench. Handle it in a fume hood while wearing safety goggles, a laboratory coat, and suitable chemical-resistant gloves. Avoid raising dust, avoid inhalation and skin or eye contact, and transfer the solid with clean, dry utensils to prevent contamination. Always consult the manufacturer's Safety Data Sheet before use and follow institutional procedures for chemical waste disposal.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"1g","offer_id":48087220912346,"sku":"TCI2510H055533156","price":6058000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510H0555.jpg?v=1767116641"},{"product_id":"tci2510h055733157","title":"TCI H0557 19648-86-3 Bis(hexafluoroacetylacetonato)manganese(II)","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eBis(hexafluoroacetylacetonato)manganese(II) is a chemical compound widely used in laboratory settings, particularly in catalysis and inorganic chemistry. This compound is a complex of manganese(II) ions coordinated by two hexafluoroacetylacetonato ligands. Its unique structure makes it an effective catalyst for various organic and inorganic reactions. In the laboratory, it plays a crucial role in facilitating chemical transformations with high efficiency and selectivity. Due to its stability and controlled reactivity, it is a reliable choice for researchers seeking a safe and effective catalytic agent.\u003c\/p\u003e\n\u003cp\u003eThe compound is known for its chemical stability and solubility in organic solvents, which are key factors in its popularity among chemists. It dissolves well in solvents such as ethyl acetate and chloroform, making it easy to handle and incorporate into reaction mixtures. Its stability under normal laboratory conditions ensures that it remains effective over time, reducing the need for frequent replenishment. Additionally, it is non-toxic and does not contain harmful substances in significant quantities, making it a safer option for use in both educational and research environments.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, Bis(hexafluoroacetylacetonato)manganese(II) is commonly used in academic and research institutions. It is particularly favored in studies related to catalytic processes, where its ability to enhance reaction rates without being consumed is highly beneficial. Its widespread application in chemical research underscores its importance as a reliable and versatile reagent in the Indonesian scientific community.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eCatalytic reactions in organic synthesis where efficient and stable catalysts are required.\u003c\/li\u003e\n\u003cli\u003eInorganic chemistry experiments involving transition metal complexes and coordination chemistry.\u003c\/li\u003e\n\u003cli\u003eResearch in transition elements and their role in catalytic mechanisms and reactivity.\u003c\/li\u003e\n\u003cli\u003ePreparation of metal-based compounds for further chemical transformations and functionalization.\u003c\/li\u003e\n\u003cli\u003eEducational demonstrations in chemistry courses focusing on coordination compounds and catalysis.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI\u003c\/li\u003e\n\u003cli\u003eCAS number: 19648-86-3\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Catalysis and Inorganic Chemistry \u0026gt; Transition Elements\u003c\/li\u003e\n\u003cli\u003ePack sizes: Available in various quantities as per standard laboratory supply\u003c\/li\u003e\n\u003cli\u003ePhysical form: Solid or powder, depending on packaging\u003c\/li\u003e\n\u003cli\u003eStorage note: Store in a cool, dry place away from moisture and direct sunlight\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eThis compound should be stored in a cool, dry environment to maintain its stability and effectiveness. It is recommended to keep it in a sealed container to prevent exposure to moisture and air, which may affect its chemical properties. Suitable containers include glass or plastic vessels with tight-fitting lids to minimize contamination and degradation. In laboratory settings, it is important to handle the compound with care, using appropriate personal protective equipment such as gloves and safety goggles. Due to its non-toxic nature, it poses minimal risk, but standard laboratory safety protocols should still be followed to ensure safe handling and use.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"1g","offer_id":48087220945114,"sku":"TCI2510H055733157","price":1213000.0,"currency_code":"IDR","in_stock":true},{"title":"5g","offer_id":48087220977882,"sku":"TCI2510H055733158","price":3408000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510H0557.jpg?v=1768360603"},{"product_id":"tci2510i007935044","title":"TCI I0079 14024-18-1 Tris(2,4-pentanedionato)iron(III)","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eTris(2,4-pentanedionato)iron(III) is a metal complex compound widely used in chemical reactions, particularly in catalysis and inorganic chemistry. It functions as a catalyst in C-H activation processes, which are essential for the synthesis of complex organic compounds. In laboratory settings, this compound is valued for its ability to accelerate chemical reactions without altering the fundamental structure of the substrate. Its role in promoting efficient and selective chemical transformations makes it a critical reagent in modern synthetic chemistry.\u003c\/p\u003e\n\u003cp\u003eThe compound is known for its chemical stability and high reactivity, which contribute to its effectiveness in various experimental conditions. Its complex structure allows for strong interactions with substrates, enhancing the efficiency of reactions. Additionally, it exhibits resistance to certain temperature and chemical conditions, making it suitable for use in diverse laboratory environments. These properties make it a reliable and versatile choice for researchers working in catalysis and inorganic chemistry.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, Tris(2,4-pentanedionato)iron(III) is commonly used in chemical research, especially in institutions focused on advanced synthetic methods. Its application spans across multiple research areas, including the development of new catalysts and the optimization of reaction conditions. The compound’s consistent performance and compatibility with various experimental setups have made it a preferred material among scientists and researchers in the region.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eC-H Activation Reactions: This compound is ideal for C-H activation due to its ability to facilitate selective bond breaking in organic substrates.\u003c\/li\u003e\n\u003cli\u003eCatalytic Synthesis of Organic Compounds: It is frequently used in the synthesis of complex organic molecules where high catalytic efficiency is required.\u003c\/li\u003e\n\u003cli\u003eInorganic Chemistry Research: Its role in inorganic chemistry makes it suitable for studies involving metal-based catalysts and coordination chemistry.\u003c\/li\u003e\n\u003cli\u003eReaction Optimization Studies: The compound’s stability and reactivity make it useful in experiments aimed at optimizing reaction conditions and yields.\u003c\/li\u003e\n\u003cli\u003eAdvanced Catalytic Systems Development: It is employed in the design of new catalytic systems that require high activity and selectivity in chemical transformations.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI\u003c\/li\u003e\n\u003cli\u003eCAS number: 14024-18-1\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Catalysis and Inorganic Chemistry \u0026gt; C-H Activation [Catalysis]\u003c\/li\u003e\n\u003cli\u003ePack sizes: Available in various quantities as per standard laboratory requirements\u003c\/li\u003e\n\u003cli\u003ePhysical form: Solid powder\u003c\/li\u003e\n\u003cli\u003eStorage note: Store in a cool, dry place away from moisture and direct sunlight\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eThis compound should be stored in a cool, dry environment to maintain its chemical stability. It is recommended to use airtight containers to prevent exposure to moisture and air, which could affect its reactivity. Proper labeling of storage containers is essential for safety and identification. Laboratory personnel should handle the compound with care, using appropriate personal protective equipment such as gloves and safety goggles. It is important to ensure that the compound is kept away from incompatible substances to avoid any potential chemical reactions. Regular inspection of storage conditions ensures the material remains in optimal condition for use in experiments.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"25g","offer_id":48087352869082,"sku":"TCI2510I007935044","price":708000.0,"currency_code":"IDR","in_stock":true},{"title":"100g","offer_id":48087352901850,"sku":"TCI2510I007935045","price":1894000.0,"currency_code":"IDR","in_stock":true},{"title":"500g","offer_id":48087352934618,"sku":"TCI2510I007935046","price":5679000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510I0079.jpg?v=1767118949"},{"product_id":"tci2510i084936136","title":"TCI I0849 14038-43-8 Iron(III) Hexacyanoferrate(II)","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eIron(III) Hexacyanoferrate(II) is a coordination compound of iron and cyanoferrate that has been historically known as a classic blue pigment, and today serves as an important functional material in inorganic chemistry and electrochemistry research. Its structure takes the form of a porous lattice framework in which iron centres exist in two different oxidation states, bridged by cyano ligands. This arrangement gives the compound its characteristic electron transfer and ion exchange behaviour, which is why it has been widely studied as an electrode material, a redox mediator, and a selective ion sorbent.\u003c\/p\u003e\n\u003cp\u003eThe properties that make this material a preferred choice are the stability of its lattice framework, its very intense colour, and its reversible redox behaviour that is readily observed using voltammetric techniques. The cavities within the lattice structure allow cations of a certain size to enter, and this forms the basis of its use in ion sorption and energy storage research. The material comes as a solid powder that is practical to weigh out, requires no complicated handling conditions, and can be dispersed to prepare thin films on electrode surfaces in sensor experiments.\u003c\/p\u003e\n\u003cp\u003eLaboratories in Indonesia make use of this material in analytical electrochemistry research, in the modification of electrode surfaces, and in inorganic and materials chemistry studies. It is typically handled at the laboratory bench in small quantities, weighed directly as a powder, and then dispersed or deposited according to the requirements of the experimental method being followed. Its straightforward handling makes it suitable for both university teaching laboratories and research groups working on sensors and functional materials.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eChemically modified electrode preparation — the material can be dispersed and deposited as a thin film on an electrode surface, giving a stable redox-active layer for electroanalytical work.\u003c\/li\u003e\n\u003cli\u003eRedox mediator studies — its reversible and readily observable redox behaviour allows it to shuttle electrons in experiments where direct electron transfer at the bare electrode is slow or poorly defined.\u003c\/li\u003e\n\u003cli\u003eElectrochemical sensor research — the combination of a stable lattice framework and clear voltammetric response makes it a common platform for developing sensing methods in analytical chemistry laboratories.\u003c\/li\u003e\n\u003cli\u003eSelective ion sorption studies — the cavities within the porous lattice admit cations of a particular size, making it a useful model material for research on ion uptake and separation.\u003c\/li\u003e\n\u003cli\u003eEnergy storage materials research — the same cation-accommodating lattice structure underpins its study as a functional electrode material in laboratory-scale energy storage investigations.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI\u003c\/li\u003e\n\u003cli\u003eCAS number: 14038-43-8\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Catalysis and Inorganic Chemistry \u0026gt; Transition Elements [Catalysis and Inorganic Chemistry]\u003c\/li\u003e\n\u003cli\u003eProduct code: I0849\u003c\/li\u003e\n\u003cli\u003ePhysical form: solid powder\u003c\/li\u003e\n\u003cli\u003ePack sizes: available in standard TCI catalogue pack sizes; please refer to the packaging options listed on this page\u003c\/li\u003e\n\u003cli\u003eStorage: keep in a tightly closed container in a cool, dry place away from direct sunlight\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eStore the material in its original tightly closed container in a cool, dry, and well ventilated place, protected from direct sunlight and from moisture that could affect the powder. Glass or chemically compatible plastic containers with secure closures are suitable for any subsample transferred for routine work, and each container should be clearly labelled with the compound name and CAS number. Handle the powder in a well ventilated area or fume hood to limit the formation and inhalation of airborne dust, and wear standard laboratory personal protective equipment including a laboratory coat, safety glasses, and suitable gloves. Avoid contact with strong acids and other incompatible reagents, weigh the material carefully to minimise dust generation, and close the container promptly after use. Clean any spilled powder immediately, wash hands after handling, and dispose of residues and contaminated materials in accordance with the chemical waste procedures applied in your laboratory.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"25g","offer_id":48087420895450,"sku":"TCI2510I084936136","price":1718000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510I0849.jpg?v=1767120427"},{"product_id":"tci2510i093736234","title":"TCI I0937 16456-81-8 Iron(III) Tetraphenylporphyrin Chloride","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eIron(III) Tetraphenylporphyrin Chloride is a chemical compound widely utilized in laboratory settings for catalytic reactions and C-H activation studies. As a member of the porphyrin family, it possesses a complex molecular structure that enables it to act as a highly reactive catalyst. This compound is particularly valuable in organic and inorganic chemistry research due to its ability to facilitate a variety of chemical transformations. Its unique electronic properties make it a versatile tool for scientists aiming to explore new reaction pathways and mechanisms.\u003c\/p\u003e\n\u003cp\u003eThe compound’s reactivity, stability, and solubility in organic solvents make it a preferred choice for many researchers. Its ability to maintain structural integrity under various experimental conditions ensures consistent performance in laboratory applications. Additionally, its high purity and predictable behavior contribute to reliable results in chemical experiments. These properties position Iron(III) Tetraphenylporphyrin Chloride as a key reagent in modern chemical research, especially in catalytic processes that require precise control over reaction conditions.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, Iron(III) Tetraphenylporphyrin Chloride is commonly used in chemical research, particularly in catalysis and C-H activation studies. Its availability and performance make it a popular choice among researchers working on organic and inorganic chemistry projects. Its use is especially prevalent in academic and industrial research settings where efficient and reliable catalytic systems are required. The compound’s role in advancing chemical innovation is well recognized in the scientific community.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eC-H Activation Studies: This compound is ideal for C-H activation due to its ability to facilitate the breaking and forming of carbon-hydrogen bonds, making it essential for exploring new catalytic mechanisms.\u003c\/li\u003e\n\u003cli\u003eOrganic Synthesis Reactions: Its reactivity and stability make it a valuable catalyst in organic synthesis, particularly in substitution and oxidation reactions where precise control is required.\u003c\/li\u003e\n\u003cli\u003eInorganic Chemistry Research: The compound’s unique electronic properties enable it to participate in various inorganic reactions, supporting studies in coordination chemistry and metal-based catalysis.\u003c\/li\u003e\n\u003cli\u003eCatalytic Oxidation Processes: Its ability to act as an efficient catalyst in oxidation reactions makes it suitable for applications in environmental and industrial chemistry.\u003c\/li\u003e\n\u003cli\u003eReductive Reaction Systems: The compound’s versatility allows it to be used in reductive processes, where it can facilitate the reduction of various organic and inorganic compounds.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI\u003c\/li\u003e\n\u003cli\u003eCAS number: 16456-81-8\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Catalysis and Inorganic Chemistry \u0026gt; C-H Activation [Catalysis]\u003c\/li\u003e\n\u003cli\u003ePack sizes: Available in various quantities as per standard laboratory supply\u003c\/li\u003e\n\u003cli\u003ePhysical form: Solid powder\u003c\/li\u003e\n\u003cli\u003eStorage note: Store in a cool, dry place away from light and moisture\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eIron(III) Tetraphenylporphyrin Chloride should be stored in a cool, dry environment to maintain its stability and reactivity. It is recommended to keep the compound in a sealed container to prevent exposure to moisture and air, which could affect its performance. Due to its chemical nature, it should be handled with care, using appropriate personal protective equipment such as gloves and safety goggles. It is best stored in a well-ventilated area to minimize any potential risks associated with its use. Proper storage conditions help ensure the compound remains effective for use in laboratory experiments. Always follow standard laboratory safety protocols when handling this material.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"200mg","offer_id":48087428661466,"sku":"TCI2510I093736234","price":1792000.0,"currency_code":"IDR","in_stock":true},{"title":"1g","offer_id":48087428694234,"sku":"TCI2510I093736235","price":6234000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510I0937.jpg?v=1767120546"},{"product_id":"tci2510m004237533","title":"TCI M0042 22033-51-8 Bis(2,4-pentanedionato)manganese(II) Dihydrate","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eBis(2,4-pentanedionato)manganese(II) Dihydrate is a chemical compound widely used in laboratory settings, particularly in catalytic and inorganic chemistry applications. It serves as a key reagent in oxidation and reduction reactions, where its ability to act as a catalyst is crucial. This compound is especially valuable in research that requires controlled and efficient chemical reactions. Its role in facilitating complex chemical transformations makes it an essential tool for chemists working in both academic and industrial environments.\u003c\/p\u003e\n\u003cp\u003eThe compound's stability and controlled reactivity make it a preferred choice for laboratory use. It exhibits specific chemical properties, including the ability to bind with various ligands, which enhances its utility in catalytic processes. Its solubility in organic solvents further simplifies its application in synthesis procedures. These characteristics ensure that it remains a reliable and effective reagent in diverse chemical experiments. Additionally, its resistance to degradation ensures long-term stability, making it suitable for extended research projects.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, Bis(2,4-pentanedionato)manganese(II) Dihydrate is commonly used in academic and research institutions. It is particularly favored for its efficiency in catalytic reactions, supporting both undergraduate and graduate-level experiments. Its availability and reliability make it a standard component in chemical research across various disciplines, contributing to the advancement of scientific knowledge in the region.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eOxidation Reactions: This compound is ideal for oxidation processes due to its catalytic properties and controlled reactivity, enabling efficient and selective reactions.\u003c\/li\u003e\n\u003cli\u003eReduction Reactions: Its ability to act as a reducing agent in specific conditions makes it suitable for reduction experiments in inorganic chemistry.\u003c\/li\u003e\n\u003cli\u003eCatalytic Synthesis: The compound facilitates complex chemical transformations, making it a preferred choice for catalytic synthesis in organic chemistry.\u003c\/li\u003e\n\u003cli\u003eAnalytical Chemistry: Its stability and reactivity make it useful in analytical procedures requiring precise and consistent chemical behavior.\u003c\/li\u003e\n\u003cli\u003eEnvironmental Studies: It is used in studies involving chemical degradation and stability, particularly in assessing the behavior of metal complexes in different environments.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI\u003c\/li\u003e\n\u003cli\u003eCAS number: 22033-51-8\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Catalysis and Inorganic Chemistry \u0026gt; Oxidation [Catalysis]\u003c\/li\u003e\n\u003cli\u003ePack sizes: Available in various quantities as per supplier specifications\u003c\/li\u003e\n\u003cli\u003ePhysical form: Dihydrate form, typically a solid\u003c\/li\u003e\n\u003cli\u003eStorage note: Store in a cool, dry place away from moisture and direct sunlight\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eThis compound should be stored in a cool, dry environment to maintain its stability and prevent degradation. It is recommended to use airtight containers to protect it from moisture and humidity, which can affect its chemical integrity. As a solid, it should be kept in a well-ventilated area to ensure safe handling. Laboratory personnel should wear appropriate personal protective equipment, such as gloves and safety goggles, when handling the compound. It is important to avoid exposure to heat or direct sunlight to maintain its effectiveness. Proper storage ensures that the compound remains suitable for use in various chemical applications without compromising its performance.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"25g","offer_id":48087507239130,"sku":"TCI2510M004237533","price":1313000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510M0042.jpg?v=1767122084"},{"product_id":"tci2510m004337534","title":"TCI M0043 14284-89-0 Tris(2,4-pentanedionato)manganese(III)","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eTris(2,4-pentanedionato)manganese(III) is a metal complex compound widely used in chemical reactions, particularly in catalytic processes. This material plays a crucial role in laboratory settings by acting as a catalyst in oxidation and reduction reactions. Its ability to accelerate chemical reactions without significant degradation makes it a valuable tool for researchers. It is especially useful in non-precious metal catalysis, where cost-effective and efficient alternatives to noble metals are sought. The compound is commonly used in both academic and industrial research environments to enhance reaction efficiency and reduce the need for more expensive catalysts.\u003c\/p\u003e\n\u003cp\u003eOne of the key properties that make Tris(2,4-pentanedionato)manganese(III) a preferred choice is its stability under various experimental conditions. It can form complexes with a wide range of ligands, providing flexibility in its application. This versatility allows it to be adapted to different reaction systems, making it suitable for a broad spectrum of chemical processes. Additionally, its chemical structure enables precise control over reaction pathways, which is essential for achieving consistent and reproducible results in laboratory experiments.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, Tris(2,4-pentanedionato)manganese(III) is frequently utilized in inorganic chemistry and catalysis research. It is a common component in studies aimed at developing sustainable and cost-effective catalytic systems. Many research institutions and universities in Indonesia rely on this compound for its reliability and performance in various chemical applications, contributing to advancements in both academic and applied research.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eInorganic chemistry research benefits from this compound due to its ability to form stable complexes with various ligands, enhancing reaction control and efficiency.\u003c\/li\u003e\n\u003cli\u003eOxidation and reduction reactions are effectively catalyzed by this material, making it ideal for synthetic organic chemistry applications.\u003c\/li\u003e\n\u003cli\u003eNon-precious metal catalysis projects often use this compound as a cost-effective alternative to noble metal catalysts, supporting green chemistry initiatives.\u003c\/li\u003e\n\u003cli\u003eCatalytic studies in academic settings rely on its stability and reactivity to investigate reaction mechanisms and optimize experimental conditions.\u003c\/li\u003e\n\u003cli\u003eIndustrial research applications leverage its performance in chemical processes that require high efficiency and minimal degradation over time.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI\u003c\/li\u003e\n\u003cli\u003eCAS number: 14284-89-0\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Catalysis and Inorganic Chemistry \u0026gt; Non-Precious Metal Catalysis\u003c\/li\u003e\n\u003cli\u003ePack sizes: Available in various quantities as per standard laboratory supply\u003c\/li\u003e\n\u003cli\u003ePhysical form: Solid\u003c\/li\u003e\n\u003cli\u003eStorage note: Store in a cool, dry place away from moisture and direct sunlight\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eThis compound should be stored in a cool, dry environment to maintain its stability and prevent degradation. It is recommended to use airtight containers to protect it from moisture and air exposure. Proper labeling of storage containers is essential for safe handling and easy identification. Laboratory personnel should wear appropriate personal protective equipment, such as gloves and safety goggles, when handling this material. It should be kept away from incompatible substances to avoid any potential chemical reactions. Regular inspection of storage conditions ensures that the material remains in optimal condition for use in experiments.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"25g","offer_id":48087507271898,"sku":"TCI2510M004337534","price":1289000.0,"currency_code":"IDR","in_stock":true},{"title":"100g","offer_id":48087507304666,"sku":"TCI2510M004337535","price":3963000.0,"currency_code":"IDR","in_stock":true},{"title":"500g","offer_id":48087507337434,"sku":"TCI2510M004337536","price":12770000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510M0043.jpg?v=1767122088"},{"product_id":"tci2510m262140945","title":"TCI M2621 32195-55-4 Manganese(III) Tetraphenylporphyrin Chloride","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eManganese(III) Tetraphenylporphyrin Chloride is a specialized chemical compound used in catalytic reactions and C-H activation studies within laboratory settings. As a complex porphyrin derivative, it plays a crucial role in facilitating chemical transformations that require the activation of carbon-hydrogen bonds. Its unique electronic properties and structural symmetry make it an essential tool for researchers exploring advanced catalytic mechanisms. This compound is particularly valuable in both organic and inorganic chemistry due to its ability to interact with a wide range of substrates and transition metals.\u003c\/p\u003e\n\u003cp\u003eThe compound's high reactivity and ability to form stable complexes with transition metals make it a preferred choice for catalytic applications. Its porphyrin structure allows for tunable redox properties, enhancing its utility in various synthetic processes. Additionally, its sensitivity to oxidation and UV light necessitates careful handling, but this also contributes to its effectiveness in controlled experimental environments. These properties make it a versatile reagent in modern laboratory research, especially in studies involving heterogeneous and homogeneous catalysis.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, Manganese(III) Tetraphenylporphyrin Chloride is commonly used in pure chemistry research, catalytic studies, and C-H activation experiments. Many research institutions and universities in Indonesia rely on this compound for experimental work aimed at advancing chemical synthesis and catalytic processes. Its application is widespread in both academic and industrial research settings, supporting a wide range of scientific inquiries.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eC-H Activation Studies: This compound is ideal for C-H activation due to its ability to facilitate bond-breaking processes in hydrocarbon substrates.\u003c\/li\u003e\n\u003cli\u003eOrganic Catalysis: Its unique electronic structure allows it to act as a catalyst in various organic reactions, enhancing reaction efficiency and selectivity.\u003c\/li\u003e\n\u003cli\u003eInorganic Chemistry Research: The compound's interaction with transition metals makes it suitable for studying inorganic catalytic systems and redox reactions.\u003c\/li\u003e\n\u003cli\u003eHeterogeneous Catalysis: Its capacity to form complexes with metal surfaces makes it a valuable reagent in heterogeneous catalytic processes.\u003c\/li\u003e\n\u003cli\u003eSynthetic Chemistry Experiments: Researchers use it to develop new synthetic pathways, particularly in reactions requiring precise control over reaction conditions.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI\u003c\/li\u003e\n\u003cli\u003eCAS number: 32195-55-4\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Catalysis and Inorganic Chemistry \u0026gt; C-H Activation [Catalysis]\u003c\/li\u003e\n\u003cli\u003ePack sizes: Not specified\u003c\/li\u003e\n\u003cli\u003ePhysical form: Not specified\u003c\/li\u003e\n\u003cli\u003eStorage note: Store in a cool, dark place away from light and oxidizing agents\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eManganese(III) Tetraphenylporphyrin Chloride should be stored in a cool, dark environment to prevent degradation due to UV exposure and oxidation. It is recommended to use airtight containers to minimize contact with air and moisture. Due to its sensitivity, it should be handled in a fume hood to ensure proper ventilation and reduce exposure risk. Avoid storing near strong oxidizing agents to prevent unwanted reactions. Proper labeling and secure storage are essential to maintain safety and prevent contamination. Always follow standard laboratory safety protocols when working with this compound.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"1g","offer_id":48087704469722,"sku":"TCI2510M262140945","price":3937000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510M2621.jpg?v=1767126946"},{"product_id":"tci2510n009642712","title":"TCI N0096 120156-44-7 Bis(2,4-pentanedionato)nickel(II) Hydrate","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eTCI N0096 Bis(2,4-pentanedionato)nickel(II) Hydrate, more commonly known as nickel(II) acetylacetonate hydrate, is a nickel coordination complex bearing two chelating acetylacetonate ligands. The compound occupies an important position as a precatalyst in modern catalysis chemistry, particularly in nickel-based cross-coupling reactions and C–H bond activation. In the organic synthesis laboratory, this material serves as a practical nickel source because it is easy to weigh out, relatively stable in air, and can be used directly together with a variety of supporting ligands to generate the active catalytic species.\u003c\/p\u003e\n\u003cp\u003eThe characteristic that makes this complex a preferred choice is the acetylacetonate ligand set, which binds the metal centre in a bidentate fashion and therefore produces a complex stable enough to be stored, yet still readily displaced by other ligands once catalysis is underway. Presented as a green solid, the compound dissolves in a range of organic solvents such as toluene and tetrahydrofuran, which simplifies the preparation of catalyst stock solutions. Its status as a hydrate means that bound water molecules are present, so for water-sensitive reactions the user must account for that water content or take steps to address it before use.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, this material is typically encountered in university research groups and institutional laboratories working on organometallic chemistry, methodology development, and catalyst screening. It is commonly used at small scale for exploratory coupling and C–H functionalisation experiments, where a reliable and easily handled nickel source shortens the path from reaction design to first result. Because it is weighed in air and dissolved in common organic solvents, it fits comfortably into laboratories equipped with standard Schlenk lines or glovebox facilities.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eNickel-catalysed cross-coupling reactions: the complex acts as a convenient precatalyst that combines with supporting ligands in situ to generate the active nickel species required for carbon–carbon bond formation.\u003c\/li\u003e\n\u003cli\u003eC–H bond activation studies: the readily displaced acetylacetonate ligands allow the nickel centre to be engaged by incoming ligands and substrates, making it suitable for exploratory C–H functionalisation chemistry.\u003c\/li\u003e\n\u003cli\u003eCatalyst and ligand screening campaigns: because it is easy to weigh and relatively air-stable, researchers can prepare multiple parallel reactions quickly while varying the supporting ligand for each run.\u003c\/li\u003e\n\u003cli\u003ePreparation of catalyst stock solutions: good solubility in organic solvents such as toluene and tetrahydrofuran lets users make up accurate solutions for reproducible dosing into small-scale reaction vessels.\u003c\/li\u003e\n\u003cli\u003eOrganometallic synthesis and precursor chemistry: the compound provides a practical entry point to other nickel complexes, since its chelating ligands can be substituted by phosphines, N-heterocyclic carbenes, or related donors.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI (Tokyo Chemical Industry)\u003c\/li\u003e\n\u003cli\u003eCAS number: 120156-44-7\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Catalysis and Inorganic Chemistry \u0026gt; C-H Activation [Catalysis]\u003c\/li\u003e\n\u003cli\u003ePack sizes: available in the standard TCI catalogue pack sizes for this item; please confirm the size required when ordering\u003c\/li\u003e\n\u003cli\u003ePhysical form: green solid, soluble in organic solvents including toluene and tetrahydrofuran\u003c\/li\u003e\n\u003cli\u003eStorage note: keep the container tightly closed in a cool, dry place away from moisture\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eStore the material in its original tightly closed container in a cool, dry, well-ventilated area, protected from moisture and kept away from incompatible substances. Amber glass or the supplied bottle is appropriate, and a desiccator or sealed secondary container is advisable where laboratory humidity is high. Because the compound is a hydrate, containers should be reclosed promptly after weighing so that the water content remains consistent between uses. Handle in a fume hood using gloves, safety glasses, and a laboratory coat, and avoid generating or inhaling dust. Weigh quantities with clean, dry spatulas, and consult the supplier safety data sheet before first use and before disposal of any residues.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"25g","offer_id":48087788323034,"sku":"TCI2510N009642712","price":1944000.0,"currency_code":"IDR","in_stock":true},{"title":"100g","offer_id":48087788355802,"sku":"TCI2510N009642713","price":5326000.0,"currency_code":"IDR","in_stock":true},{"title":"500g","offer_id":48087788388570,"sku":"TCI2510N009642714","price":17136000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510N0096.jpg?v=1767129231"},{"product_id":"tci2510p100646550","title":"TCI P1006 147-14-8 Copper(II) Phthalocyanine (beta-form)","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eCopper(II) Phthalocyanine (beta-form) from TCI is a metal complex with a copper(II) ion at the center of a large, conjugated phthalocyanine macrocyclic ring. It is well known as a very stable blue pigment and is widely used in the ink, paint, and plastics industries. The beta-form is one of its most thermodynamically stable crystal polymorphs. In modern laboratories, copper phthalocyanine is also known as a p-type organic semiconductor and as a transition-metal-based catalyst. Its role therefore reaches from inorganic chemistry to organic electronics, which makes it a useful reference compound for both research and teaching.\u003c\/p\u003e\n\u003cp\u003eResearchers choose this compound because it is very stable to heat, light, acids, and bases. Its flat macrocyclic structure and extended π-electron system give it strong absorption in the red and near-infrared regions. In the solid state, the molecules stack closely together, which lets the material conduct positive charge carriers (holes). The copper ion at the center of the ring provides redox activity that is used in catalytic oxidation reactions and in electrocatalysis. Because it is very poorly soluble, the material is usually processed by vacuum thermal evaporation to make thin films. Access to a specific polymorph also helps researchers get consistent, reproducible results when studying structure-property relationships.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, Copper(II) Phthalocyanine (beta-form) is typically used in university chemistry and physics departments, materials science research groups, and industrial quality-control laboratories. Research teams working on organic semiconductors, thin-film devices, and electrocatalysts use it as a well-characterized model compound. Pigment and coatings laboratories use it as a reference material when evaluating ink, paint, and plastic formulations. Its stability also makes it suitable for long-term projects and for teaching laboratories that demonstrate coordination chemistry and transition-metal complexes.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eOrganic semiconductor research: As a p-type organic semiconductor whose closely stacked molecules conduct holes, it suits studies of charge transport in thin films.\u003c\/li\u003e\n\u003cli\u003eThin-film fabrication by vacuum thermal evaporation: Its very low solubility and high thermal stability make it a good fit for vacuum deposition instead of solution processing.\u003c\/li\u003e\n\u003cli\u003eCatalytic oxidation and electrocatalysis: The redox-active copper(II) center inside the stable macrocycle supports catalytic oxidation reactions and electrocatalytic studies in inorganic chemistry laboratories.\u003c\/li\u003e\n\u003cli\u003eOptical and spectroscopic studies: Its extended π-electron system absorbs red and near-infrared light strongly, which makes it useful for absorption studies and light-harvesting research.\u003c\/li\u003e\n\u003cli\u003ePigment and coatings reference work: As a very stable blue pigment that resists heat, light, acids, and bases, it serves as a benchmark in ink, paint, and plastics testing.\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eSpecifications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eBrand: TCI (product code P1006)\u003c\/li\u003e\n\u003cli\u003eCAS number: 147-14-8\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Catalysis and Inorganic Chemistry \u0026gt; Transition Elements\u003c\/li\u003e\n\u003cli\u003ePack sizes: Available in the pack sizes listed in the TCI catalog\u003c\/li\u003e\n\u003cli\u003ePhysical form: Solid blue pigment, beta-form crystal polymorph\u003c\/li\u003e\n\u003cli\u003eStorage: Keep tightly closed in a cool, dry place away from incompatible materials\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eStore Copper(II) Phthalocyanine (beta-form) in its original, tightly sealed container in a cool, dry, well-ventilated area, away from strong oxidizing agents and sources of contamination. Glass or chemically resistant plastic containers with secure caps are suitable for longer storage. Handle the material in a fume hood or a well-ventilated area to avoid breathing in fine dust. Wear standard personal protective equipment, including gloves, safety glasses, and a laboratory coat. Avoid creating dust when weighing or transferring the material, and clean up spills promptly with suitable methods. Always check the Safety Data Sheet from TCI before use, and follow your institution's chemical hygiene and waste disposal procedures.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"25g","offer_id":48088019108058,"sku":"TCI2510P100646550","price":683000.0,"currency_code":"IDR","in_stock":true},{"title":"100g","offer_id":48088019140826,"sku":"TCI2510P100646551","price":1692000.0,"currency_code":"IDR","in_stock":true},{"title":"500g","offer_id":48088019173594,"sku":"TCI2510P100646552","price":4721000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510P1006.jpg?v=1767134092"},{"product_id":"tci2510t074651649","title":"TCI T0746 16092-38-9 Bis(trifluoro-2,4-pentanedionato)cobalt(II)","description":"\u003cp\u003e\u003cstrong\u003eBis(trifluoro-2,4-pentanedionato)cobalt(II)\u003c\/strong\u003e (CAS 16092-38-9) is a high-quality chemical from TCI, supplied as \u003cstrong\u003eReagent Grade \/ for Synthesis\u003c\/strong\u003e.\u003c\/p\u003e\u003cp\u003e\u003cstrong\u003eApplication:\u003c\/strong\u003e Synthesis reagent for a wide range of organic chemistry transformations in laboratory and industrial settings.\u003c\/p\u003e\u003cp\u003e\u003cstrong\u003eSpecifications:\u003c\/strong\u003e\u003c\/p\u003e\u003cul\u003e\n\u003cli\u003eMolecular formula: C10H8CoF6O4\u003c\/li\u003e\n\u003cli\u003eCAS number: 16092-38-9\u003c\/li\u003e\n\u003cli\u003ePurity: \u0026gt;90.0%(T)\u003c\/li\u003e\n\u003cli\u003eTCI product code: T0746\u003c\/li\u003e\n\u003c\/ul\u003e\u003cp\u003e\u003cstrong\u003eSynonyms:\u003c\/strong\u003e Cobalt(II) Trifluoroacetylacetonate; Trifluoroacetylacetono Cobalt(II) Salt\u003c\/p\u003e\u003cp\u003eAvailable from \u003cstrong\u003eAMI Scientific\u003c\/strong\u003e, the authorised TCI distributor in Indonesia. \u003cstrong\u003eContact us for pricing and stock availability\u003c\/strong\u003e — we ship throughout Indonesia.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"1g","offer_id":48088343347418,"sku":"TCI2510T074651649","price":2424000.0,"currency_code":"IDR","in_stock":true},{"title":"5g","offer_id":48088343380186,"sku":"TCI2510T074651650","price":7547000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510T0746.jpg?v=1767140476"},{"product_id":"tci2510t093251885","title":"TCI T0932 14592-89-3 Tris(trifluoro-2,4-pentanedionato)chromium(III)","description":"\u003cp\u003e\u003cstrong\u003eTris(trifluoro-2,4-pentanedionato)chromium(III)\u003c\/strong\u003e (CAS 14592-89-3) is a high-quality chemical from TCI, supplied as \u003cstrong\u003eReagent Grade \/ for Synthesis\u003c\/strong\u003e.\u003c\/p\u003e\u003cp\u003e\u003cstrong\u003eApplication:\u003c\/strong\u003e Synthesis reagent for a wide range of organic chemistry transformations in laboratory and industrial 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Indonesia.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"1g","offer_id":48088359272666,"sku":"TCI2510T093251885","price":1868000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510T0932.jpg?v=1769057818"},{"product_id":"tci2510b04915277","title":"TCI B0491 52611-57-1 Copper(II) Bis(2-hydroxyethyl)dithiocarbamate","description":"\u003cp\u003e\u003cstrong\u003eCopper(II) Bis(2-hydroxyethyl)dithiocarbamate\u003c\/strong\u003e (CAS 52611-57-1) is a high-quality chemical from TCI, supplied as \u003cstrong\u003eReagent Grade \/ for Synthesis\u003c\/strong\u003e.\u003c\/p\u003e\u003cp\u003e\u003cstrong\u003eApplication:\u003c\/strong\u003e Synthesis reagent for a wide range of organic chemistry transformations in laboratory and industrial settings.\u003c\/p\u003e\u003cp\u003e\u003cstrong\u003eSpecifications:\u003c\/strong\u003e\u003c\/p\u003e\u003cul\u003e\n\u003cli\u003eMolecular formula: C10H20CuN2O4S4\u003c\/li\u003e\n\u003cli\u003eCAS number: 52611-57-1\u003c\/li\u003e\n\u003cli\u003ePurity: \u0026gt;98.0%(T)\u003c\/li\u003e\n\u003cli\u003eTCI product code: B0491\u003c\/li\u003e\n\u003c\/ul\u003e\u003cp\u003e\u003cstrong\u003eSynonyms:\u003c\/strong\u003e Bis(2-hydroxyethyl)dithiocarbamic Acid Copper(II) Salt\u003c\/p\u003e\u003cp\u003eAvailable from \u003cstrong\u003eAMI Scientific\u003c\/strong\u003e, the authorised TCI distributor in Indonesia. \u003cstrong\u003eContact us for pricing and stock availability\u003c\/strong\u003e — we ship throughout Indonesia.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"5g","offer_id":48085524709594,"sku":"TCI2510B04915277","price":860000.0,"currency_code":"IDR","in_stock":true},{"title":"25g","offer_id":48085524742362,"sku":"TCI2510B04915278","price":2878000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510B0491.jpg?v=1769055243"},{"product_id":"tci2510b14376713","title":"TCI B1437 72688-90-5 Bis(tetrabutylammonium) Bis(1,3-dithiole-2-thione-4,5-dithiolato)palladium(II)","description":"\u003cp\u003e\u003cstrong\u003eBis(tetrabutylammonium) Bis(1,3-dithiole-2-thione-4,5-dithiolato)palladium(II)\u003c\/strong\u003e (CAS 72688-90-5) is a high-quality chemical from TCI, supplied as \u003cstrong\u003eReagent Grade \/ for Synthesis\u003c\/strong\u003e.\u003c\/p\u003e\u003cp\u003e\u003cstrong\u003eApplication:\u003c\/strong\u003e Used as a catalyst in cross-coupling reactions such as Suzuki, Heck, and Sonogashira.\u003c\/p\u003e\u003cp\u003e\u003cstrong\u003eSpecifications:\u003c\/strong\u003e\u003c\/p\u003e\u003cul\u003e\n\u003cli\u003eMolecular formula: C38H72N2PdS10\u003c\/li\u003e\n\u003cli\u003eCAS number: 72688-90-5\u003c\/li\u003e\n\u003cli\u003ePurity: \u0026gt;90.0%(T)\u003c\/li\u003e\n\u003cli\u003eTCI product code: B1437\u003c\/li\u003e\n\u003c\/ul\u003e\u003cp\u003eAvailable from \u003cstrong\u003eAMI Scientific\u003c\/strong\u003e, the authorised TCI distributor in Indonesia. \u003cstrong\u003eContact us for pricing and stock availability\u003c\/strong\u003e — we ship throughout Indonesia.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"100mg","offer_id":50506905026778,"sku":"TCI2510B14376713","price":1112000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510B1437.jpg?v=1768815194"},{"product_id":"tci2510b16777075","title":"TCI B1677 10380-28-6 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distributor in Indonesia. \u003cstrong\u003eContact us for pricing and stock availability\u003c\/strong\u003e — we ship throughout Indonesia.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"1g","offer_id":48088407408858,"sku":"TCI2510T141652576","price":4013000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510T1416.jpg?v=1769057892"},{"product_id":"tci2510t168652949","title":"TCI T1686 14405-49-3 Tris(dibenzoylmethanato) Iron(III)","description":"\u003cp\u003e\u003cstrong\u003eTris(dibenzoylmethanato) Iron(III)\u003c\/strong\u003e (CAS 14405-49-3) is a high-quality chemical from TCI, supplied as \u003cstrong\u003eReagent Grade \/ for Synthesis\u003c\/strong\u003e.\u003c\/p\u003e\u003cp\u003e\u003cstrong\u003eApplication:\u003c\/strong\u003e Synthesis reagent for a wide range of organic chemistry transformations in laboratory and industrial 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Indonesia.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"5g","offer_id":48085192278234,"sku":"TCI2604T1686379","price":2702000.0,"currency_code":"IDR","in_stock":true},{"title":"25g","offer_id":48085192311002,"sku":"TCI2604T1686380","price":8001000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510T1686.jpg?v=1767142044"},{"product_id":"tci2510t438056140","title":"TCI T4380 13476-99-8 Vanadium(III) Acetylacetonate","description":"\u003cp\u003e\u003cstrong\u003eVanadium(III) Acetylacetonate\u003c\/strong\u003e (CAS 13476-99-8) is a high-quality chemical from TCI, supplied as \u003cstrong\u003eReagent Grade \/ for Synthesis\u003c\/strong\u003e.\u003c\/p\u003e\u003cp\u003e\u003cstrong\u003eApplication:\u003c\/strong\u003e Synthesis reagent for a wide range of organic chemistry transformations in laboratory and industrial 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Indonesia.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"25g","offer_id":48088618074330,"sku":"TCI2510V001656423","price":2095000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510V0016.jpg?v=1767145511"}],"url":"https:\/\/amiscientific.com\/en\/collections\/tci-l3-magnetic-metal-complexes.oembed?page=3","provider":"AMI Scientific","version":"1.0","type":"link"}