Atomfair 1,2-Difluoro-3-propoxybenzene C9H10F2O

Description 1,2-Difluoro-3-propoxybenzene (CAS No. 124728-93-4) is a high-purity fluorinated aromatic compound with the molecular formula C9H10F2O. This specialty chemical is characterized by its unique structure featuring two fluorine atoms and a propoxy group on a benzene ring, making it a valuable intermediate for advanced organic synthesis. Ideal for researchers and scientists, this compound is rigorously tested for quality and consistency, ensuring optimal performance in demanding applications. Available in various quantities, it is supplied with comprehensive analytical data including GC/MS, NMR, and HPLC purity reports. Store in a cool, dry place under inert conditions to maintain stability.

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Description

Description

1,2-Difluoro-3-propoxybenzene (CAS No. 124728-93-4) is a high-purity fluorinated aromatic compound with the molecular formula C9H10F2O. This specialty chemical is characterized by its unique structure featuring two fluorine atoms and a propoxy group on a benzene ring, making it a valuable intermediate for advanced organic synthesis. Ideal for researchers and scientists, this compound is rigorously tested for quality and consistency, ensuring optimal performance in demanding applications. Available in various quantities, it is supplied with comprehensive analytical data including GC/MS, NMR, and HPLC purity reports. Store in a cool, dry place under inert conditions to maintain stability.

  • CAS No: 124728-93-4
  • Molecular Formula: C9H10F2O
  • Molecular Weight: 172.17
  • Exact Mass: 172.06997126
  • Monoisotopic Mass: 172.06997126
  • IUPAC Name: 1,2-difluoro-3-propoxybenzene
  • SMILES: CCCOC1=C(C(=CC=C1)F)F
  • Synonyms: 1,2-difluoro-3-propoxybenzene, 124728-93-4, DTXSID60560998, DTXCID90511776, 1-Propoxy-2,3-difluorobenzene

Application

1,2-Difluoro-3-propoxybenzene is widely used as a key building block in pharmaceutical and agrochemical research, particularly in the synthesis of fluorinated active ingredients. Its unique electronic properties make it suitable for materials science applications, including liquid crystals and organic semiconductors. Researchers also utilize this compound in cross-coupling reactions and as a precursor for advanced fluorinated polymers.

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