Atomfair Ethyl fluoroethyl carbonate C5H9FO3

Description Ethyl 2-Fluoroethyl Carbonate (CAS No. 10117-03-0) is a high-purity fluorinated carbonate ester with the molecular formula C5H9FO3. This specialized chemical is synthesized under stringent conditions to ensure optimal quality and consistency, making it ideal for advanced research and industrial applications. Its unique structure, featuring both ethyl and fluoroethyl functional groups, lends itself to use as a solvent or electrolyte additive in lithium-ion batteries, where it enhances thermal stability and electrochemical performance. Available in various quantities, this compound is rigorously tested for purity (typically ??98%) via GC, NMR, and HPLC analysis. Proper storage in a cool, dry, and inert environment…

Description

Description

Ethyl 2-Fluoroethyl Carbonate (CAS No. 10117-03-0) is a high-purity fluorinated carbonate ester with the molecular formula C5H9FO3. This specialized chemical is synthesized under stringent conditions to ensure optimal quality and consistency, making it ideal for advanced research and industrial applications. Its unique structure, featuring both ethyl and fluoroethyl functional groups, lends itself to use as a solvent or electrolyte additive in lithium-ion batteries, where it enhances thermal stability and electrochemical performance. Available in various quantities, this compound is rigorously tested for purity (typically ??98%) via GC, NMR, and HPLC analysis. Proper storage in a cool, dry, and inert environment is recommended to maintain stability.

  • CAS No: 10117-03-0
  • Molecular Formula: C5H9FO3
  • Molecular Weight: 136.12
  • Exact Mass: 136.05357231
  • Monoisotopic Mass: 136.05357231
  • IUPAC Name: ethyl 2-fluoroethyl carbonate
  • SMILES: CCOC(=O)OCCF
  • Synonyms: 10117-03-0, Carbonic acid, ethyl 2-fluoroethyl ester, ethyl (2-fluoroethyl) carbonate, ethyl fluoroethyl carbonate, ethyl 2-fluoroethyl carbonate

Application

Ethyl 2-Fluoroethyl Carbonate is primarily employed as a co-solvent or additive in lithium-ion battery electrolytes, where its fluorinated group improves high-voltage stability and reduces flammability. Researchers also explore its potential in organic synthesis as a fluorinated building block for pharmaceuticals and agrochemicals. Additionally, it may serve as a specialty solvent for polar reactions in fine chemical manufacturing.

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