{"title":"Vulcanization Agents, Vulcanization Accelerators [Polymer Additives]","description":"\u003cp\u003e\u003cstrong\u003eVulcanization Agents, Vulcanization Accelerators [Polymer Additives]\u003c\/strong\u003e — memuat senyawa xantat, tiuram, dan ditiokarbamat yang berfungsi sebagai agen vulkanisasi maupun akselerator dalam pengolahan karet dan polimer elastomer. Aditif ini berperan membentuk ikatan silang (crosslink) antar rantai polimer selama proses vulkanisasi.\u003c\/p\u003e\u003cp\u003eVulcanization Agents, Vulcanization Accelerators [Polymer Additives] dipakai peneliti dan formulator industri karet untuk mempercepat serta mengendalikan pembentukan ikatan silang sulfur pada kompon karet. Senyawa seperti tetrabenzilthiuram disulfida atau seng dietilditiokarbamat berperan sebagai akselerator vulkanisasi, sedangkan garam xantat dipakai dalam formulasi khusus untuk mengatur laju curing dan sifat mekanik produk karet akhir.\u003c\/p\u003e\u003cp\u003eContoh produk dalam koleksi ini: \u003ca href=\"\/en\/products\/tci2510x000156686\"\u003eTCI X0001 6846-35-1 Xanthane Hydride\u003c\/a\u003e, \u003ca href=\"\/en\/products\/tci2510d024619600\"\u003eTCI D0246 120-52-5 4,4'-Dibenzoylquinone Dioxime\u003c\/a\u003e, \u003ca href=\"\/en\/products\/tci2510t392555643\"\u003eTCI T3925 10591-85-2 Tetrabenzylthiuram Disulfide\u003c\/a\u003e, \u003ca href=\"\/en\/products\/tci2510d027919646\"\u003eTCI D0279 120-54-7 Dipentamethylenethiuram Tetrasulfide\u003c\/a\u003e, \u003ca href=\"\/en\/products\/tci2510b04925279\"\u003eTCI B0492 19163-92-9 Bis(2-hydroxyethyl)dithiocarbamic Acid Zinc(II) Salt\u003c\/a\u003e, \u003ca href=\"\/en\/products\/tci2510d049219951\"\u003eTCI D0492 14324-55-1 Zinc Diethyldithiocarbamate\u003c\/a\u003e, \u003ca href=\"\/en\/products\/tci2510p053445916\"\u003eTCI P0534 2720-67-4 Potassium Propylxanthate\u003c\/a\u003e, \u003ca href=\"\/en\/products\/tci2510d071720310\"\u003eTCI D0717 137-30-4 Zinc Dimethyldithiocarbamate\u003c\/a\u003e.\u003c\/p\u003e\u003cp\u003ePerhatikan jenis gugus fungsional (xantat, tiuram, ditiokarbamat), kation logam pengikat seperti seng atau kalium, serta kompatibilitasnya dengan sistem vulkanisasi dan jenis elastomer yang digunakan. 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 Polymer Additives, sering dipakai bersamaan dalam satu alur kerja laboratorium:\u003c\/p\u003e\u003cul\u003e\n\u003cli\u003e\u003ca href=\"\/en\/collections\/tci-l4-surfactants\"\u003eSurfactants\u003c\/a\u003e\u003c\/li\u003e\n\u003cli\u003e\u003ca href=\"\/en\/collections\/tci-l4-resin-stabilizers-polymer-additives\"\u003eResin Stabilizers [Polymer Additives]\u003c\/a\u003e\u003c\/li\u003e\n\u003cli\u003e\u003ca href=\"\/en\/collections\/tci-l4-plasticizers-polymer-additives\"\u003ePlasticizers [Polymer Additives]\u003c\/a\u003e\u003c\/li\u003e\n\u003cli\u003e\u003ca href=\"\/en\/collections\/tci-l4-flame-retardants-polymer-additives\"\u003eFlame Retardants [Polymer Additives]\u003c\/a\u003e\u003c\/li\u003e\n\u003cli\u003e\u003ca href=\"\/en\/collections\/tci-l4-nucleating-agents-polymer-additives\"\u003eNucleating Agents [Polymer Additives]\u003c\/a\u003e\u003c\/li\u003e\n\u003c\/ul\u003e\u003cp\u003eKembali ke \u003ca href=\"\/en\/collections\/tci-l3-polymer-additives\"\u003ePolymer Additives\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":"tci2510d024619600","title":"TCI D0246 120-52-5 4,4'-Dibenzoylquinone Dioxime","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003e4,4'-Dibenzoylquinone Dioxime is a chemical compound widely used in laboratory settings for its versatility in various chemical reactions. It plays a crucial role in the synthesis of complex compounds and qualitative analysis, particularly in the field of analytical chemistry. This compound is valued for its ability to form stable complexes with metal ions, making it an essential reagent in metal ion detection and identification. Its unique molecular structure allows it to act as a ligand in metal complex formations, contributing to its effectiveness in multiple chemical processes.\u003c\/p\u003e\n\u003cp\u003eThe properties that make 4,4'-Dibenzoylquinone Dioxime a preferred choice include its stability under normal chemical conditions and its solubility in organic solvents. These characteristics ensure that it remains effective in a wide range of laboratory applications without degrading easily. Additionally, its reactivity and ability to form stable complexes with heavy metal ions enhance its utility in analytical procedures. The compound’s chemical stability and solubility also contribute to its ease of handling and integration into various experimental protocols.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, 4,4'-Dibenzoylquinone Dioxime is commonly used in chemical analysis, organic synthesis, and environmental testing. It is a key component in the identification of heavy metal ions such as copper, lead, and tin. Its reliability and efficiency make it a preferred choice for researchers and analysts working in both academic and industrial settings. Its role in environmental sample analysis further underscores its importance in laboratory research in Indonesia.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eQualitative Analysis: This compound is ideal for identifying heavy metal ions due to its ability to form stable complexes, making it a key reagent in analytical chemistry.\u003c\/li\u003e\n\u003cli\u003eOrganic Synthesis: Its unique molecular structure allows it to participate in various synthetic reactions, contributing to the creation of complex organic compounds.\u003c\/li\u003e\n\u003cli\u003eEnvironmental Testing: It is used in the analysis of water and environmental samples to detect the presence of heavy metals, ensuring accurate and reliable results.\u003c\/li\u003e\n\u003cli\u003eMetal Ion Detection: Its reactivity with metal ions makes it suitable for use in analytical procedures that require the identification of specific metal species.\u003c\/li\u003e\n\u003cli\u003eResearch and Development: It is widely used in laboratory research for its versatility and effectiveness in various chemical processes and 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: 120-52-5\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Building Blocks \u0026gt; Non-Heterocyclic Building Blocks\u003c\/li\u003e\n\u003cli\u003ePack sizes: Available in standard laboratory quantities\u003c\/li\u003e\n\u003cli\u003ePhysical form: Solid\u003c\/li\u003e\n\u003cli\u003eStorage note: Store 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\u003eThis compound should be stored in a cool, dry place away from direct sunlight to maintain its chemical stability. It is recommended to use airtight containers to prevent moisture absorption and contamination. Due to its reactivity, it should be handled with appropriate personal protective equipment, such as gloves and safety goggles, to ensure laboratory safety. It is important to keep it away from incompatible substances to avoid any potential chemical interactions. Proper labeling of storage containers is essential for safe handling and easy identification. Regular inspection of storage conditions ensures the compound remains in optimal condition for use in laboratory applications.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"25g","offer_id":48086361145562,"sku":"TCI2510D024619600","price":564000.0,"currency_code":"IDR","in_stock":true},{"title":"500g","offer_id":48086361178330,"sku":"TCI2510D024619601","price":4947000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510D0246.jpg?v=1767101038"},{"product_id":"tci2510d027919646","title":"TCI D0279 120-54-7 Dipentamethylenethiuram Tetrasulfide","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eDipentamethylenethiuram Tetrasulfide (DMTTS), also known as TCI D0279, is a chemical compound widely used in materials science and polymer chemistry. This material serves as a polymer additive, playing a crucial role in modifying the properties of polymers during synthesis. It is commonly employed in laboratory settings to enhance the mechanical and thermal stability of various polymer-based materials. Its versatility makes it an essential component in the development of advanced materials, particularly in applications requiring durability and performance under extreme conditions.\u003c\/p\u003e\n\u003cp\u003eDMTTS is valued for its unique molecular structure, which includes sulfur and nitrogen atoms bonded to a carbon chain. These characteristics enable it to act as an effective cross-linking agent in the vulcanization of rubber, significantly improving the strength and resilience of the final product. Its chemical stability and resistance to degradation make it a preferred choice for use in controlled laboratory environments. The compound's ability to enhance polymer properties without compromising the integrity of the material further solidifies its importance in material science research.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, DMTTS is frequently utilized in polymer research and development, particularly in the manufacturing and testing of composite materials. It is especially relevant for institutions focused on chemical innovation and the application of modern material technologies. Its role in improving the performance of polymers such as rubber, plastics, and composites makes it a key component in both academic and industrial research settings.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eMechanical property testing of polymer materials to enhance the durability and resilience of synthetic rubbers and plastics.\u003c\/li\u003e\n\u003cli\u003eVulcanization processes in rubber manufacturing to improve cross-linking and thermal stability of polymer chains.\u003c\/li\u003e\n\u003cli\u003eComposite material development to modify the structural integrity and performance of polymer-based composites.\u003c\/li\u003e\n\u003cli\u003eThermal stability analysis of polymers to assess their behavior under high-temperature conditions.\u003c\/li\u003e\n\u003cli\u003eResearch into advanced polymer additives to explore new applications in material science and chemical engineering.\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: 120-54-7\u003c\/li\u003e\n\u003cli\u003eCategory: Materials Science \u0026gt; Polymer\/Macromolecule Reagents \u0026gt; Polymer Additives\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\u003eDMTTS should be stored in a cool, dry environment to maintain its chemical stability and prevent degradation. It is recommended to use airtight containers to protect it from moisture and air exposure. Due to its chemical nature, it should be handled with care, using appropriate personal protective equipment such as gloves and safety goggles. It is important to ensure proper ventilation in the laboratory when working with this compound. Avoid contact with skin and eyes, and keep it away from incompatible materials. Proper storage and handling procedures help ensure the safety of laboratory personnel and the integrity of the material.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"25g","offer_id":48086364913882,"sku":"TCI2510D027919646","price":507000.0,"currency_code":"IDR","in_stock":true},{"title":"500g","offer_id":48086364946650,"sku":"TCI2510D027919647","price":2699000.0,"currency_code":"IDR","in_stock":true}]},{"product_id":"tci2510d049219951","title":"TCI D0492 14324-55-1 Zinc Diethyldithiocarbamate","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eZinc Diethyldithiocarbamate (ZDDC) is a chemical compound widely used in materials science research, particularly in the development of colloidal quantum dots (QDs). This reagent plays a crucial role in the synthesis of metal nanoparticles and organometallic compounds, which exhibit unique optical and electronic properties. As a key component in advanced material research, ZDDC is essential for creating thin films and complex nanostructures. Its chemical stability and controllable reactivity enable researchers to precisely manipulate chemical reactions, making it a versatile tool in laboratory settings.\u003c\/p\u003e\n\u003cp\u003eOne of the main reasons ZDDC is preferred is its ability to interact effectively with various organic compounds. This interaction allows for the formation of stable colloidal systems, which are fundamental in nanotechnology applications. Additionally, ZDDC is available in solid form, making it easy to handle and store. Its compatibility with a wide range of reagents and solvents further enhances its utility in diverse experimental setups. These properties make ZDDC a reliable and efficient choice for researchers working on cutting-edge material science projects.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, ZDDC is commonly used in research related to advanced materials, including display technologies, optical sensors, and electronic components. Its role in energy efficiency studies and metal-based material development also highlights its importance in the scientific community. The compound's specific characteristics make it a valuable resource for both academic and industrial research in Indonesia.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eColloidal Quantum Dot Synthesis: ZDDC is ideal for creating quantum dots due to its ability to stabilize nanoparticles and control their optical properties.\u003c\/li\u003e\n\u003cli\u003eThin Film Fabrication: Its chemical stability allows for the precise formation of thin films used in optoelectronic devices.\u003c\/li\u003e\n\u003cli\u003eNanoparticle Engineering: ZDDC enables the synthesis of metal nanoparticles with tunable properties, crucial for advanced material development.\u003c\/li\u003e\n\u003cli\u003eOptical Sensor Development: The compound's interaction with organic materials makes it suitable for creating sensitive optical sensors.\u003c\/li\u003e\n\u003cli\u003eEnergy Efficiency Research: ZDDC is used in studies focused on improving the efficiency of metal-based materials for energy 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: 14324-55-1\u003c\/li\u003e\n\u003cli\u003eCategory: Materials Science \u0026gt; Electronic Materials \u0026gt; Colloidal Quantum Dot (QD) Research Reagents\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 direct sunlight\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eZDDC should be stored in a cool, dry environment to maintain its chemical stability. It is recommended to keep the compound in airtight containers to prevent exposure to moisture and air, which could affect its reactivity. Proper labeling of storage containers is essential for safety and traceability. Laboratory personnel should wear appropriate personal protective equipment, such as gloves and safety goggles, when handling ZDDC to minimize direct contact. The compound should be kept away from incompatible materials to avoid any potential chemical reactions. Regular monitoring of storage conditions ensures the material remains effective for research applications.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"25g","offer_id":48086387425498,"sku":"TCI2510D049219951","price":536000.0,"currency_code":"IDR","in_stock":true},{"title":"500g","offer_id":48086387458266,"sku":"TCI2510D049219952","price":4695000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510D0492.jpg?v=1768817291"},{"product_id":"tci2510d071720310","title":"TCI D0717 137-30-4 Zinc Dimethyldithiocarbamate","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eZinc Dimethyldithiocarbamate (ZDDC), with CAS number 137-30-4, is a chemical compound widely utilized in materials science and polymer chemistry. This material serves as an additive or filler in various polymer-based materials, particularly in the production of rubber, plastics, and composite materials. In laboratory settings, ZDDC plays a critical role in studying chemical reactions, material performance testing, and the development of new materials. Its versatility and chemical stability make it an essential component for researchers working on polymer modification and functional material synthesis.\u003c\/p\u003e\n\u003cp\u003eZDDC is preferred due to its ability to enhance mechanical properties, thermal stability, and oxidation resistance in polymer systems. Its reactive nature allows it to interact with other compounds in chemical reactions, making it valuable for synthetic processes. Additionally, ZDDC exhibits good solubility in organic solvents, which facilitates its use in a wide range of synthesis techniques. The compound’s chemical stability ensures it remains effective even under prolonged exposure to laboratory conditions, making it a reliable choice for both academic and industrial research applications.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, ZDDC is commonly used in polymer research and development. It is particularly relevant in studies involving rubber and plastic formulations, where its ability to improve material performance is highly valued. Researchers in Indonesia frequently use ZDDC to develop new composite materials and to test the effects of additives on polymer properties. Its availability and effectiveness make it a standard component in many material science laboratories across the country.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003ePolymer Modification: ZDDC is used to enhance the mechanical and thermal properties of polymer materials, making it ideal for rubber and plastic formulations.\u003c\/li\u003e\n\u003cli\u003eOxidation Inhibition: Its ability to act as an antioxidant helps in stabilizing polymers against oxidative degradation, especially in high-temperature environments.\u003c\/li\u003e\n\u003cli\u003eComposite Material Development: ZDDC serves as a filler in composite materials, improving their strength and durability during synthesis.\u003c\/li\u003e\n\u003cli\u003eChemical Reaction Studies: The reactive nature of ZDDC makes it suitable for studying chemical interactions in polymer synthesis and functional material development.\u003c\/li\u003e\n\u003cli\u003eMaterial Performance Testing: ZDDC is frequently used in testing the stability and performance of polymer-based materials under various 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: 137-30-4\u003c\/li\u003e\n\u003cli\u003eCategory: Materials Science \u0026gt; Polymer\/Macromolecule Reagents \u0026gt; Polymer Additives\u003c\/li\u003e\n\u003cli\u003ePack sizes: Available in various quantities as per supplier specifications\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\u003eZDDC should be stored in a cool, dry environment to maintain its chemical stability and prevent degradation. It is recommended to use airtight containers to protect it from moisture and contaminants. Due to its reactivity, it should be handled with care in a well-ventilated laboratory setting. Avoid exposure to high temperatures and direct sunlight to preserve its effectiveness. Proper personal protective equipment, such as gloves and safety goggles, should be worn when handling ZDDC to ensure laboratory safety. Regular monitoring of storage conditions is essential to maintain the integrity of the compound for research applications.\u003c\/p\u003e","brand":"TCI","offers":[{"title":"25g","offer_id":48086402138330,"sku":"TCI2510D071720310","price":536000.0,"currency_code":"IDR","in_stock":true},{"title":"500g","offer_id":48086402171098,"sku":"TCI2510D071720311","price":1799000.0,"currency_code":"IDR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0756\/7156\/8602\/files\/TCI2510D0717.jpg?v=1768204851"},{"product_id":"tci2510d592026910","title":"TCI D5920 1192027-04-5 N,N-Dimethyl-N'-(3-thioxo-3H-1,2,4-dithiazol-5-yl)formimidamide","description":"\u003ch3\u003eDescription\u003c\/h3\u003e\n\u003cp\u003eTCI D5920, CAS number 1192027-04-5, is N,N-Dimethyl-N'-(3-thioxo-3H-1,2,4-dithiazol-5-yl)formimidamide, a heterocyclic reagent known among oligonucleotide researchers as the DDTT sulfurizing reagent. The molecule carries a 1,2,4-dithiazole ring bearing a thioxo group, which serves as the source of the reactive sulfur atom. In the laboratory, this material acts as a sulfur transfer reagent in solid-phase oligonucleotide synthesis, converting phosphite linkages into phosphorothioates after the coupling step. That role makes it an important component in the preparation of antisense oligonucleotides, aptamers, and a wide range of modified nucleic acid constructs used in biomolecular research.\u003c\/p\u003e\n\u003cp\u003eThe property that makes this reagent so widely chosen is its high sulfurization efficiency combined with short reaction times, so synthesis cycles on automated synthesizers remain compact without sacrificing completeness of conversion. The reagent also shows good solution stability in the solvents commonly used in phosphoramidite workflows, which means a prepared solution can be installed on the instrument and drawn upon repeatedly over a normal working period. In addition, its tendency not to generate excessive side reactions helps keep the crude product profile clean, simplifying downstream purification and analysis of the assembled sequence.\u003c\/p\u003e\n\u003cp\u003eIn Indonesian laboratories, this reagent is typically found wherever nucleic acid chemistry is practised: university research groups working on molecular biology and medicinal chemistry, institutional biotechnology laboratories, and service units that assemble custom oligonucleotides for internal projects. It is generally ordered as part of a phosphoramidite reagent set alongside coupling and deblocking solutions, and used on automated synthesizers as well as in smaller manual solid-phase preparations where modified backbones are required.\u003c\/p\u003e\n\u003ch3\u003eLaboratory Applications\u003c\/h3\u003e\n\u003cul\u003e\n\u003cli\u003eSolid-phase oligonucleotide synthesis — the reagent transfers sulfur to the phosphite linkage immediately after coupling, converting it cleanly to a phosphorothioate within a short cycle step.\u003c\/li\u003e\n\u003cli\u003eAntisense oligonucleotide preparation — phosphorothioate backbones are central to antisense constructs, and this reagent installs them with the high conversion efficiency such sequences require throughout every linkage.\u003c\/li\u003e\n\u003cli\u003eAptamer synthesis — selected backbone positions can be sulfurized during assembly, allowing researchers to build modified aptamer sequences on the same automated synthesizer platform without additional handling steps.\u003c\/li\u003e\n\u003cli\u003eModified nucleic acid construct research — the reagent supports preparation of nucleic acid analogues where phosphorothioate linkages are introduced at defined positions for biomolecular and structural investigations.\u003c\/li\u003e\n\u003cli\u003eAutomated synthesizer workflows — its good solution stability in common phosphoramidite solvents lets a single prepared bottle stay mounted on the instrument and serve repeated synthesis runs.\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: 1192027-04-5\u003c\/li\u003e\n\u003cli\u003eChemical name: N,N-Dimethyl-N'-(3-thioxo-3H-1,2,4-dithiazol-5-yl)formimidamide\u003c\/li\u003e\n\u003cli\u003eCategory: Chemistry \u0026gt; Building Blocks \u0026gt; Heterocyclic Building Blocks\u003c\/li\u003e\n\u003cli\u003eCommon designation: DDTT sulfurizing reagent\u003c\/li\u003e\n\u003cli\u003ePack sizes: available in standard TCI research-scale packaging; please confirm the size required when ordering\u003c\/li\u003e\n\u003cli\u003eStorage: keep in the closed original container under the conditions stated on the manufacturer label\u003c\/li\u003e\n\u003c\/ul\u003e\n\u003ch3\u003eHandling and Storage\u003c\/h3\u003e\n\u003cp\u003eStore the reagent in its original tightly closed container, kept dry and away from moisture, heat, and direct sunlight, and follow the storage conditions printed on the manufacturer label. Keep containers well sealed between uses, as sulfur transfer reagents of this type are best protected from atmospheric humidity. Prepared solutions should be held in clean, dry, chemically compatible amber glass bottles fitted with septum caps when installed on a synthesizer. Handle the material in a well-ventilated fume hood while wearing safety glasses, nitrile gloves, and a laboratory coat. Weigh and dissolve using dry glassware and anhydrous solvents to preserve reactivity. Label all prepared solutions with contents and preparation date, keep the reagent separated from strong oxidizing agents, and dispose of residues and rinse solvents as chemical waste according to your institution's procedures. 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