Atomfair 3-Phenoxypyridine C11H9NO

Description 3-Phenoxypyridine (CAS No. 2176-45-6) is a high-purity organic compound with the molecular formula C11H9NO . This heterocyclic aromatic compound features a pyridine ring substituted with a phenoxy group at the 3-position, making it a valuable intermediate in pharmaceutical and agrochemical synthesis. With a molecular weight of 171.20 g/mol , it is supplied as a crystalline solid with exceptional purity (>98%) suitable for research and industrial applications. Its unique structure enables versatile reactivity in cross-coupling reactions, ligand synthesis, and as a precursor for bioactive molecules. Packaged under inert gas to ensure stability, this product is ideal for organometallic catalysis, medicinal…

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Description

Description

3-Phenoxypyridine (CAS No. 2176-45-6) is a high-purity organic compound with the molecular formula C11H9NO. This heterocyclic aromatic compound features a pyridine ring substituted with a phenoxy group at the 3-position, making it a valuable intermediate in pharmaceutical and agrochemical synthesis. With a molecular weight of 171.20 g/mol, it is supplied as a crystalline solid with exceptional purity (>98%) suitable for research and industrial applications. Its unique structure enables versatile reactivity in cross-coupling reactions, ligand synthesis, and as a precursor for bioactive molecules. Packaged under inert gas to ensure stability, this product is ideal for organometallic catalysis, medicinal chemistry, and material science research.

  • CAS No: 2176-45-6
  • Molecular Formula: C11H9NO
  • Molecular Weight: 171.19
  • Exact Mass: 171.068413911
  • Monoisotopic Mass: 171.068413911
  • IUPAC Name: 3-phenoxypyridine
  • SMILES: C1=CC=C(C=C1)OC2=CN=CC=C2
  • Synonyms: 3-Phenoxypyridine, Pyridine, 3-phenoxy-, CI 844, BJ5L85N23P, UNII-BJ5L85N23P

Application

3-Phenoxypyridine serves as a key building block in the synthesis of pharmaceuticals, particularly in the development of CNS-active compounds and kinase inhibitors. It is utilized in agrochemical research for designing novel pesticides and herbicides due to its heterocyclic scaffold. Additionally, this compound finds use in material science as a ligand precursor for transition metal catalysts in organic transformations.

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