Skip to product information
1 of 2

TCI

CAS 59146-96-2

6-Nitro-2,3-xylidine TCI N0500

6-Nitro-2,3-xylidine TCI N0500

Chemical Identity

CAS No.
59146-96-2
PubChem
CID 597166·SID 87573826
Formula
C8H10N2O2
Molecular weight
166.18 g/mol
Purity
>98.0%(GC)
Reference databases
ECHA
Full identifiers (IUPAC, SMILES, InChIKey)
IUPAC
2,3-dimethyl-6-nitroaniline
SMILES
CC1=C(C(=C(C=C1)[N+](=O)[O-])N)C
InChIKey
YEFYPFWBLCARLC-UHFFFAOYSA-N
Regular price Rp 1.936.200,00
Regular price Sale price Rp 1.936.200,00
Sale Sold out
Shipping calculated at checkout.
Berat
Quantity
Pembayaran hanya melalui request quotation dan dilakukan setelah tim kami menghubungi Anda. Mohon cantumkan nomor WhatsApp aktif untuk konfirmasi pesanan & pembuatan invoice. Estimasi pengiriman 2-4 minggu setelah pembayaran.

Dokumen Keamanan & Mutu

CoA (Certificate of Analysis)

Spesifik per batch produksi — diterbitkan dan dikirim bersama barang sesuai nomor lot yang Anda terima.

Contoh CoA segera tersedia.

💬 Minta CoA via WhatsApp

View full details

6-Nitro-2,3-xylidine is a chemical compound widely utilized in organic laboratory settings for its reactivity and versatility in synthetic reactions. As a non-heterocyclic building block, it serves as a key intermediate in the synthesis of complex organic molecules. Its aromatic structure with a nitro group at the sixth position contributes to its chemical stability and reactivity, making it a valuable tool for researchers. This compound is commonly used in the development of pharmaceuticals and other specialized chemical products, offering a reliable foundation for further chemical transformations.

The compound's high reactivity and stable aromatic framework make it a preferred choice for various chemical applications. Its ability to undergo substitution and electrophilic reactions under controlled conditions allows for the creation of a wide range of derivatives. The predictable chemical behavior of 6-Nitro-2,3-xylidine ensures consistent results in laboratory experiments, which is crucial for research and development. Its sensitivity to high temperatures and oxidizing agents necessitates careful handling, but this also ensures that it remains a controlled and precise reagent in synthetic processes.

In Indonesian laboratories, 6-Nitro-2,3-xylidine is frequently used in organic chemistry research, particularly in academic and research institutions. Its availability in various packaging formats makes it suitable for both small-scale experiments and larger chemical syntheses. The compound's role in pharmaceutical and chemical synthesis is well-established, supporting a wide range of scientific investigations in the region.

  • Organic synthesis applications benefit from 6-Nitro-2,3-xylidine due to its reactivity and ability to undergo substitution reactions, enabling the creation of complex molecular structures.
  • Pharmaceutical research utilizes this compound as a building block for the development of new drug compounds, leveraging its aromatic structure and chemical stability.
  • Chemical research in academic institutions relies on this reagent for its predictable behavior in electrophilic reactions, supporting a wide range of synthetic pathways.
  • Industrial chemical production uses this compound as a key intermediate in the manufacture of specialty chemicals, ensuring consistent and reliable results.
  • Analytical chemistry applications employ this compound for its stability and reactivity, making it suitable for use in various analytical procedures and testing protocols.

Brand TCI
CAS number 59146-96-2
Molecular formula —
Purity —
Category Chemistry > Building Blocks > Non-Heterocyclic Building Blocks
Pack sizes Available in various packaging options for different experimental scales
Physical form Solid, typically in crystalline form
Storage Requires storage in a cool, dry place away from oxidizing agents and high temperatures

6-Nitro-2,3-xylidine 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 can affect its reactivity. Due to its sensitivity to high temperatures and oxidizing agents, it should be kept away from heat sources and incompatible substances. Proper labeling and secure storage are essential to ensure safe handling. In laboratory settings, personal protective equipment such as gloves and goggles should be worn when handling this compound to minimize risk. Regular monitoring of storage conditions is advised to maintain the integrity and safety of the material.

—