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Atomfair 2-Bromo-4-(pentafluorosulfanyl)aniline C6H5BrF5NS
Description 2-Bromo-4-(pentafluorosulfanyl)aniline (CAS No. 159727-25-0) is a high-purity, specialized aromatic compound with the molecular formula C6H5BrF5NS . This organofluorine building block features a reactive bromo substituent and a pentafluorosulfanyl (-SF5) group, making it valuable for advanced synthetic applications. The compound is supplied as a crystalline solid with ??95% purity (HPLC) and is rigorously tested for consistency. Ideal for pharmaceutical intermediates, agrochemical development, and materials science research. Packaged under inert gas in amber glass vials to ensure stability. MSDS and analytical data (NMR, GC/MS) available upon request.
Description
Description
2-Bromo-4-(pentafluorosulfanyl)aniline (CAS No. 159727-25-0) is a high-purity, specialized aromatic compound with the molecular formula C6H5BrF5NS. This organofluorine building block features a reactive bromo substituent and a pentafluorosulfanyl (-SF5) group, making it valuable for advanced synthetic applications. The compound is supplied as a crystalline solid with ??95% purity (HPLC) and is rigorously tested for consistency. Ideal for pharmaceutical intermediates, agrochemical development, and materials science research. Packaged under inert gas in amber glass vials to ensure stability. MSDS and analytical data (NMR, GC/MS) available upon request.
- CAS No: 159727-25-0
- Molecular Formula: C6H5BrF5NS
- Molecular Weight: 298.07
- Exact Mass: 296.92462
- Monoisotopic Mass: 296.92462
- IUPAC Name: 2-bromo-4-(pentafluoro-lambda6-sulfanyl)aniline
- SMILES: C1=CC(=C(C=C1S(F)(F)(F)(F)F)Br)N
- Synonyms: 2-bromo-4-(pentafluorosulfanyl)aniline, 828-990-7, 159727-25-0, (4-Amino-3-bromophenyl)pentafluorosulfur, 2-Bromo-4-(pentafluoro-6-sulfanyl)aniline
Application
This compound serves as a versatile intermediate in the synthesis of SF5-containing bioactive molecules for medicinal chemistry applications. The pentafluorosulfanyl group enhances lipophilicity and metabolic stability in drug candidates. Researchers utilize it to develop novel PET radiotracers due to the fluorine content. In materials science, it acts as a precursor for high-performance polymers with unique electronic properties.
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