Atomfair 3-tert-Butylaniline C10H15N

Description 3-tert-Butylaniline (CAS No. 5369-19-7) is a high-purity organic compound with the molecular formula C10H15N . This aromatic amine features a tert-butyl group at the 3-position of the aniline ring, offering unique steric and electronic properties for advanced chemical synthesis. Ideal for researchers and scientists, our 3-tert-Butylaniline is rigorously tested to ensure ??98% purity (GC), making it suitable for pharmaceutical intermediates, agrochemical development, and material science applications. The product is supplied as a clear to pale-yellow liquid with a characteristic amine odor, packaged under inert gas to maintain stability. Available in quantities ranging from 1g to 1kg, it is stored…

Description

Description

3-tert-Butylaniline (CAS No. 5369-19-7) is a high-purity organic compound with the molecular formula C10H15N. This aromatic amine features a tert-butyl group at the 3-position of the aniline ring, offering unique steric and electronic properties for advanced chemical synthesis. Ideal for researchers and scientists, our 3-tert-Butylaniline is rigorously tested to ensure ??98% purity (GC), making it suitable for pharmaceutical intermediates, agrochemical development, and material science applications. The product is supplied as a clear to pale-yellow liquid with a characteristic amine odor, packaged under inert gas to maintain stability. Available in quantities ranging from 1g to 1kg, it is stored in amber glass vials or HDPE bottles to prevent degradation. Key synonyms include EINECS 226-361-6, DTXSID30201942, and DTXCID60124433.

  • CAS No: 5369-19-7
  • Molecular Formula: C10H15N
  • Molecular Weight: 149.23
  • Exact Mass: 149.120449483
  • Monoisotopic Mass: 149.120449483
  • IUPAC Name: 3-tert-butylaniline
  • SMILES: CC(C)(C)C1=CC(=CC=C1)N
  • Synonyms: 3-tert-Butylaniline, 5369-19-7, EINECS 226-361-6, DTXSID30201942, DTXCID60124433

Application

3-tert-Butylaniline serves as a versatile building block in organic synthesis, particularly in the preparation of specialty chemicals and functional materials. Its sterically hindered structure makes it valuable for developing pharmaceuticals, such as kinase inhibitors and other bioactive molecules. Additionally, it is employed in agrochemical research for synthesizing herbicides and pesticides with enhanced selectivity. The compound’s electron-rich aromatic system also facilitates its use in ligand design for catalysis and polymer modification.

If you are interested or have any questions, please contact us at support@atomfair.com