746738
Lithium hexafluorophosphate solution
in ethylene carbonate and ethyl methyl carbonate, 1.0 M LiPF6 in EC/EMC=50/50 (v/v), battery grade
Sinónimos:
1.0 M LiPF6 EC/EMC=50/50 (v/v), 1.0M LiPF6 EC/MEC=50/50 (v/v), Powerlyte, Purelyte
About This Item
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grade
battery grade
Quality Level
form
solution
greener alternative product characteristics
Design for Energy Efficiency
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sustainability
Greener Alternative Product
concentration
(1.0 M LiPF6 in EC/EMC)
impurities
<15 ppm H2O
<50 ppm HF
color
APHA: <50
bp
100 °C
density
1.27 g/mL at 25 °C (lit.)
anion traces
chloride (Cl-): ≤1 ppm
sulfate (SO42-): ≤2 ppm
cation traces
Ca: ≤1 ppm
Fe: ≤1 ppm
K: ≤1 ppm
Na: ≤1 ppm
Pb: ≤1 ppm
application(s)
battery manufacturing
greener alternative category
SMILES string
F[P-](F)(F)(F)(F)F.[Li+]
InChI
1S/F6P.Li/c1-7(2,3,4,5)6;/q-1;+1
InChI key
AXPLOJNSKRXQPA-UHFFFAOYSA-N
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General description
Application
The ready-to-use electrolyte solutions are available in different solvent blends and can support a wide variety of lithium ion battery applications. These solutions are high purity and battery grade thus making them also suitable as standards in LIB research. Customized formulations can be made by inter-mixing the electrolyte solutions or by mixing appropriate of additives.
Other Notes
- Do not use with glass equipment
- All work should be done very quickly under dry air to prevent electrolytes from water uptake and solvent vaporization.
Legal Information
related product
signalword
Danger
hcodes
Hazard Classifications
Acute Tox. 4 Oral - Eye Dam. 1 - Flam. Liq. 3 - Skin Corr. 1A - STOT RE 1 Inhalation - STOT RE 2 Oral
target_organs
Bone,Teeth, Kidney
Storage Class
3 - Flammable liquids
wgk_germany
WGK 2
flash_point_f
86.0 °F
flash_point_c
30 °C
Certificados de análisis (COA)
Busque Certificados de análisis (COA) introduciendo el número de lote del producto. Los números de lote se encuentran en la etiqueta del producto después de las palabras «Lot» o «Batch»
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Artículos
Dr. Sun reviews the recent advances in solid-state rechargeable batteries and cover the fundamentals of solid electrolytes in solid-state batteries, the theory of ion conduction, and the structures and electrochemical processes of solid-state Li batteries.
The critical technical challenges associated with the commercialization of electric vehicle batteries include cost, performance, abuse tolerance, and lifespan.
Lithium-ion batteries (LIBs) have been widely adopted as the most promising portable energy source in electronic devices because of their high working voltage, high energy density, and good cyclic performance.
Due to the adverse impact of the continued use of fossil fuels on the earth’s environment and climate, researchers have been asked to develop new approaches for producing power using renewable sources like wind and solar energy
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