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Molecular Formula:C7H5N3O2S

Molecular Weight:195.1985

UN Number:

Haz Class:

Packing Group:

Synonyms: 4-Nitrobenzo[d]thiazol-2-amine; 6973-51-9; AC1L622W; AC1Q202D; SCHEMBL1011902; 4-Nitro-benzothiazol-2-ylamine; CHEMBL1339002; CTK2F8405; DTXSID50286039; XPYJFCKUPMJFHE-UHFFFAOYSA-N; HMS2691A16; KS-000000BG; 4-nitro-1,3-benzothiazol-2-amine; 2-amino-4-nitro-1,3-benzothiazole; ANW-47350; FCH842316; MFCD00819610; NSC-43548; STK729617; ZINC17302259; AKOS000299426; MCULE-9732973864; AC-27174; 4-nitrobenzothiazol-2-amine; AJ-70039; BR-80176; DA-17112; DS-15884; SC-88266; SMR000224925; AX8188296; ST4019859; TR-054056; 4CH-009649; 2-benzothiazolamine, 4-nitro-; BB 0216619; CS-0042666; EU-0017658; FT-0713106; ST24029192; W7947; S-6803; A0944/0044205; C7H5N3O2S; AR-1D9021; 2-amino-4-nitrobenzothiazole; CID238934; 2-Benzothiazolamine, 4-nitro- (9CI); 89820-07-5; AK-80176; NSC43548; MLS000698358; 4-nitrobenzothiazole-2-ylamine;

Keywords: 6973-51-9,MFCD00819610,1P003MBW,4-Nitrobenzo[d]thiazol-2-amine,C7H5N3O2S

Catalog# Purity Size Price Dis. Price Availability Quantity
1P003MBW 95% 100mg $33.00 $25.00 In Stock USA ADD TO CART BUY NOW
1P003MBW 95% 250mg $46.00 $35.00 In Stock USA ADD TO CART BUY NOW

  • 4-Nitrobenzo[d]thiazol-2-amine is a valuable compound in chemical synthesis due to its versatile applications. This compound is commonly utilized as a key building block in the preparation of various pharmaceuticals, agrochemicals, and other fine chemicals. Its unique structure provides a solid foundation for the synthesis of more complex molecules by reacting with various functional groups. With its presence, chemists can efficiently introduce the 4-nitrobenzothiazole moiety into their target compounds, thereby enhancing their biological or chemical properties. Additionally, 4-Nitrobenzo[d]thiazol-2-amine serves as a crucial intermediate in the synthesis of dyes, pigments, and materials used in industry. Its compatibility with a wide range of synthetic methodologies makes it a prized asset in the field of chemical synthesis, enabling the creation of innovative and impactful molecules.

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