Atomfair Caesium hexafluorophosphate CsPF6 CsF6P

Description Caesium Hexafluorophosphate (CsPF6) is a high-purity inorganic salt widely utilized in advanced electrochemical and materials research applications. This compound features a cesium cation (Cs+) paired with a hexafluorophosphate anion (PF6SUB_SUP_3 ), offering exceptional stability and solubility in non-aqueous solvents. With a molecular formula of CsF6P and CAS number 16893-41-7 , it is a critical reagent for lithium-ion battery research, catalysis, and specialty chemical synthesis. Our product is rigorously tested to ensure ultra-low impurities, making it ideal for sensitive applications requiring precise ionic conductivity or electrolyte formulation. Packaged under inert conditions to prevent degradation, it is available in customizable quantities…

Description

Description

Caesium Hexafluorophosphate (CsPF6) is a high-purity inorganic salt widely utilized in advanced electrochemical and materials research applications. This compound features a cesium cation (Cs+) paired with a hexafluorophosphate anion (PF6), offering exceptional stability and solubility in non-aqueous solvents. With a molecular formula of CsF6P and CAS number 16893-41-7, it is a critical reagent for lithium-ion battery research, catalysis, and specialty chemical synthesis. Our product is rigorously tested to ensure ultra-low impurities, making it ideal for sensitive applications requiring precise ionic conductivity or electrolyte formulation. Packaged under inert conditions to prevent degradation, it is available in customizable quantities for laboratory and industrial use.

  • CAS No: 16893-41-7
  • Molecular Formula: CsF6P
  • Molecular Weight: 277.8696329
  • Exact Mass: 277.86963293
  • Monoisotopic Mass: 277.86963293
  • IUPAC Name: cesium;hexafluorophosphate
  • SMILES: F[P-](F)(F)(F)(F)F.[Cs+]
  • Synonyms: 16893-41-7, Caesium hexafluorophosphate, 813-259-7, Cesium hexafluorophosphate, Phosphate(1-), hexafluoro-, cesium (1:1)

Application

Caesium hexafluorophosphate is primarily employed as a conductive salt in non-aqueous electrolytes for lithium-ion batteries due to its high electrochemical stability. It also serves as a precursor in the synthesis of cesium-based catalysts for organic transformations. Researchers leverage its solubility in polar aprotic solvents for advanced material science applications, including ionic liquids and supercapacitors.

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