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MSE PRO 99% Lithium Difluorophosphate (LiDFP) for Battery Research– MSE Supplies LLC

Free Shipping on MSE PRO Online Orders of $500 or More! U.S. Orders Only * Offer Excludes Hazmat Shipments *

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Lithium Difluorophosphate (LiDFP), >99% - MSE Supplies LLC

MSE PRO 99% Lithium Difluorophosphate (LiDFP) for Battery Research

SKU: CM1022

  • $ 27995
  • Save $ 3400



MSE PRO™ Lithium Difluorophosphate (LiDFP), >99%

Lithium Difluorophosphate (LiDFP) is an off-white electrolyte additive. Its most common uses include being used as an electrolyte material in rechargeable batteries. It can reduce battery self-discharge, reduce the volume of lithium hexafluorophosphate, improve the battery high and low temperature performance to improve the cycling efficiency and capacity retention of cells and improve power capability.

Technical Data

Item Value
Chemical Name Lithium Difluorophosphate
Synonym(s)
  • LiDFP
  • LiPO2F2
  • Phosphorodifluoridic Acid Lithium Salt
  • Lithium phosphorus fluoride
  • Lithium phosphorus difluoride
  • Lithium fluorophosphide
  • Lithium phosphorodifluoridate
Chemical Formula F2H2LiO2P
SKU#
  • CM1022: 50g
  • CM1023: 100g
CAS# 24389-25-1
Molecular Weight 107.91  g/mol
Appearance White powder
Purity >99 %
Water Content  <150 ppm
HF <100 ppm
Other Impurity <120 ppm
Solubility in Water Yes
Storage Store under inert gas
Condition to Avoid Moisture

 

Shipping and handling: This material is classified as a hazmat and requires special packaging and shipping to comply with regulatory requirements. Please contact us for specific details with shipping and handling.

References 

[1] Lithium difluorophosphate as a promising electrolyte lithium additive for high-voltage lithium-ion batteries. ACS applied energy materials 1, no. 6 (2018): 2647-2656.

[2] Lithium difluorophosphate‐based dual‐salt low concentration electrolytes for lithium metal batteries. Advanced Energy Materials 10, no. 30 (2020): 2001440.

[3] Lithium difluorophosphate as a dendrite-suppressing additive for lithium metal batteries. ACS applied materials & interfaces 10, no. 26 (2018): 22201-22209.