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LiDFP

LiDFP Suppliers list
Company Name: Hangzhou Jinghao Biotechnology Co., LTD  Gold
Tel: 17513242016
Email: 1576861551@qq.com
Company Name: Hubei SVETO New Material Technology Co., Ltd  Gold
Tel: 13277095679
Email: 1375175909@qq.com
Company Name: Baoding Bink New Materials Co., Ltd.  Gold
Tel: 17531190177
Email: peter@yan-xi.com
Company Name: Shandong Hemao New Material Co., Ltd.  Gold
Tel: 13061243681
Email: hemiao66@163.com
Company Name: Suzhou yacoo science co.,Ltd  Gold
Tel: 0512-87182055 13451648594
Email: sales@yacoo.com.cn

LiDFP manufacturers

  • Li difluorophosphate
  • Li difluorophosphate pictures
  • 2026-09-11
  • CAS:24389-25-1
  • Min. Order: 1KG
  • Purity: 98%min
  • Supply Ability: 30tons/month

Related articles

LiDFP Basic information
Product Name:LiDFP
Synonyms:Li difluorophosphate;lithium difluorophosphate;Lituium difluorophosphate;Lithium Difluorophosphate (LiPO2F2);Phosphorodifluoridic acid, lithium salt;Phosphorodifluoridic acid, lithium salt (1:1);Lithium difluorophosphate difluoroph osphinic acid;Difluorophosphinic Acid Lithium Salt
CAS:24389-25-1
MF:F2H2LiO2P
MW:109.92
EINECS:643-080-8
Product Categories:
Mol File:24389-25-1.mol
LiDFP Structure
LiDFP Chemical Properties
density 1.979g/cm3 at 20℃
form Solid:particulate/powder
Major Applicationbattery manufacturing
InChIInChI=1S/F2HO2P.Li.H/c1-5(2,3)4;;/h(H,3,4);;
InChIKeyWKKCPZOLQZPXAA-UHFFFAOYSA-N
SMILESP(O)(=O)(F)F.[LiH]
Safety Information
WGK Germany WGK 3
Storage Class6.1C - Combustible acute toxic Cat.3
toxic compounds or compounds which causing chronic effects
Hazard ClassificationsAcute Tox. 3 Oral
Acute Tox. 4 Dermal
Aquatic Chronic 2
Eye Dam. 1
Skin Corr. 1B
STOT RE 1
MSDS Information
LiDFP Usage And Synthesis
Chemical PropertiesLithium Difluorophosphate (LiPO2F2, LiDFP) is a white powder solid with a melting point of 340℃. It can easily absorb moisture in the air and exhibit acidity when exposed to air. It is used as an additive in electrolytes for lithium-ion batteries to enhance the cyclic performance, high-temperature storage performance, and lower the internal resistance of the battery.
UsesLithium Difluorophosphate (LiDFP), as an additive of electrolyte for rechargeable Lithium-ion battery, effectively reduces the resistance of SEI layer formed on the electrode under low temperature, and reduces self-discharge of the battery. Meanwhile,adding of Lithium Difluorophosphate can reduce the usage of Lithium Hexafluorophosphate(LiPF6).
Battery MaterialsResearch found that incorporating LiDFP as a built-in component in Lithium-rich manganese-based layered oxides (LRM) cathodes enables targeted and persistent multistage interfacial regulation for enhanced stability[1].
SynthesisIn the closed steel reaction dad, respectively, P2O5, LiF and dry tetrachlorofuran were added to the reaction dad at room temperature, sealed and stirred, cooled down to -40 C, and replaced the kettle atmosphere three times with nitrogen, argon or helium with a water content of less than 1 ppm, after the moisture content in the kettle was less than 1 ppm, the temperature was raised to 100 C, the pressure was raised to 0.8 MPa, and the reaction was conducted for 5 hours with stirring. The reaction temperature was 100C and the reaction pressure was 0.8MPa; the molar ratio of P0F3 to P2O5 and LiF was 1:1.2:1.7; then the temperature of the reactor was lowered to room temperature, and the insoluble material was removed by filtration after depressurization to obtain a light yellow transparent filtrate, and the solvent was removed by distillation under reduced pressure, and the rest of the solids were recrystallized with freshly dried acetonitrile at low temperature, and the crystals were obtained by filtration and dried under vacuum at 40C to obtain LiF3, and the crystals were obtained by drying under vacuum at 40C to obtain LiF3. After vacuum drying at 40C, LiPO2F2 is obtained as white powder solid, moisture 10ppm, color 20, LiF% 0.02%, purity is 99.7%.
References[1] Zhu, J., Zhang, X., Ma, D., Zhang, L., Xiao, Y., Zheng, K., Duan, J., Xu, S., Cao, L., Li, Y., Guo, G., Zuo, X., Yi, J., Liu, X., Ma, C., & Xia, Y. (2026). From built-in LiDFP to high-stability interface: A targeted and persistent multistage strategy for lithium-rich cathode. Chemical Engineering Journal, 541. 177753. https://doi.org/10.1016/j.cej.2026.177753
LiDFP Preparation Products And Raw materials
Raw materialsLithium hexafluorophosphate-->Lithium carbonate
Tag:LiDFP(24389-25-1) Related Product Information
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