Atomfair 1-Fluoro-3-nitrobenzene m-Fluoronitrobenzene C6H4FNO2

Description 1-Fluoro-3-nitrobenzene (CAS No. 402-67-5) is a high-purity aromatic compound with the molecular formula C6H4FNO2, widely utilized in organic synthesis and pharmaceutical research. This yellow crystalline solid, also known as m-Fluoronitrobenzene , exhibits excellent reactivity as an intermediate for nucleophilic substitution reactions due to the electron-withdrawing effects of the nitro and fluorine groups. With a melting point of 40-42??C and boiling point of 205-207??C, it is soluble in organic solvents like ethanol and ether but insoluble in water. Ideal for Suzuki couplings, amination, and other cross-coupling reactions, this compound is rigorously tested via GC/HPLC to ensure ??98% purity, meeting the…

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Description

Description

1-Fluoro-3-nitrobenzene (CAS No. 402-67-5) is a high-purity aromatic compound with the molecular formula C6H4FNO2, widely utilized in organic synthesis and pharmaceutical research. This yellow crystalline solid, also known as m-Fluoronitrobenzene, exhibits excellent reactivity as an intermediate for nucleophilic substitution reactions due to the electron-withdrawing effects of the nitro and fluorine groups. With a melting point of 40-42??C and boiling point of 205-207??C, it is soluble in organic solvents like ethanol and ether but insoluble in water. Ideal for Suzuki couplings, amination, and other cross-coupling reactions, this compound is rigorously tested via GC/HPLC to ensure ??98% purity, meeting the stringent demands of academic and industrial laboratories. Packed in amber glass bottles under inert conditions to prevent degradation.

  • CAS No: 402-67-5
  • Molecular Formula: C6H4FNO2
  • Molecular Weight: 141.10
  • Exact Mass: 141.02260653
  • Monoisotopic Mass: 141.02260653
  • IUPAC Name: 1-fluoro-3-nitrobenzene
  • SMILES: C1=CC(=CC(=C1)F)[N+](=O)[O-]
  • Synonyms: 1-FLUORO-3-NITROBENZENE, 402-67-5, 3-Fluoronitrobenzene, m-Fluoronitrobenzene, Benzene, 1-fluoro-3-nitro-

Application

1-Fluoro-3-nitrobenzene serves as a versatile building block in pharmaceutical synthesis, particularly for creating fluorinated aniline derivatives. It is employed in agrochemical research to develop novel herbicides and pesticides via nitro-group reduction or halogen displacement. The compound also finds use in materials science for synthesizing liquid crystals and dyes, leveraging its electron-deficient aromatic ring for controlled functionalization.

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