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Atomfair 1-Ethyl-1H-benzimidazole-2-thiol C9H10N2S
Description 1-Ethyl-1H-benzimidazole-2-thiol (CAS No. 39856-57-0) is a high-purity heterocyclic organic compound with the molecular formula C9H10N2S. This benzimidazole derivative, also known as 3-ethyl-1H-benzimidazole-2-thione, features a thiol functional group at the 2-position, making it a versatile building block for pharmaceutical and agrochemical research. With a molecular weight of 178.25 g/mol, this compound is supplied as a crystalline solid with ??98% purity (HPLC). Its unique structure enables applications in coordination chemistry, medicinal chemistry, and material science. Store under inert conditions at 2-8??C to ensure long-term stability.
Description
Description
1-Ethyl-1H-benzimidazole-2-thiol (CAS No. 39856-57-0) is a high-purity heterocyclic organic compound with the molecular formula C9H10N2S. This benzimidazole derivative, also known as 3-ethyl-1H-benzimidazole-2-thione, features a thiol functional group at the 2-position, making it a versatile building block for pharmaceutical and agrochemical research. With a molecular weight of 178.25 g/mol, this compound is supplied as a crystalline solid with ??98% purity (HPLC). Its unique structure enables applications in coordination chemistry, medicinal chemistry, and material science. Store under inert conditions at 2-8??C to ensure long-term stability.
- CAS No: 39856-57-0
- Molecular Formula: C9H10N2S
- Molecular Weight: 178.26
- Exact Mass: 178.05646950
- Monoisotopic Mass: 178.05646950
- IUPAC Name: 3-ethyl-1H-benzimidazole-2-thione
- SMILES: CCN1C2=CC=CC=C2NC1=S
- Synonyms: 1-ethyl-1H-benzimidazole-2-thiol, 801-637-4, 39573-31-4, 1-Ethyl-1H-benzoimidazole-2-thiol, 3-ethyl-1H-benzimidazole-2-thione
Application
1-Ethyl-1H-benzimidazole-2-thiol serves as a key intermediate in the synthesis of biologically active compounds, particularly in antiviral and anticancer drug discovery. The thiol group allows for metal coordination, making it useful in catalytic systems and metallopharmaceutical development. Researchers also employ this heterocycle in the design of corrosion inhibitors and organic electronic materials due to its electron-rich aromatic system.
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