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934844

Sigma-Aldrich

Lithium hexafluorophosphate solution

greener alternative

in ethylene carbonate and ethyl methyl carbonate with vinylene carbonate additive, 1.2 M LiPF6 in EC/EMC=30/70 (w/w) + 1 wt.% VC, battery grade, ≥99.5% trace metals basis

Sinónimos:

1.2 M LiPF6 in EC/EMC=30/70 (w/w) + 1 wt.% VC

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About This Item

Código UNSPSC:
12352600
NACRES:
NA.21

grado

battery grade

Nivel de calidad

Ensayo

≥99.5% trace metals basis

Formulario

liquid

características de los productos alternativos más sostenibles

Design for Energy Efficiency
Learn more about the Principles of Green Chemistry.

sustainability

Greener Alternative Product

concentración

1.2 M (LiPF6)

impurezas

≤100.0 ppm H2O
≤250.0 ppm KF

color

clear colorless to faint yellow

densidad

1.21741 g/mL

aplicaciones

battery manufacturing

categoría alternativa más sostenible

Descripción general

Our 1.2 M LiPF6 in EC/EMC=30/70 (w/w) + 1 wt.% VC, battery-grade electrolyte solution is designed specifically for use in lithium-ion batteries. This electrolyte contains a high concentration of lithium hexafluorophosphate in a carefully formulated mixture of ethylene carbonate and ethyl methyl carbonate with a vinylene carbonate additive, ensuring excellent battery performance. Our electrolyte solution is of battery-grade quality, with minimized impurities of water, acid, and metals. It is packaged in an aluminum bottle under inert, dry conditions
We are committed to bringing you Greener Alternative Products, which adhere to one or more of The 12 Principles of Greener Chemistry. This product has been enhanced for energy efficiency. Click here for more information.

Aplicación

We designed our 1.2 M LiPF6 in EC/EMC=30/70 (w/w) + 1 wt.% VC battery-grade electrolyte solution to offer top-notch safety, thermal stability, and exceptional performance for use in lithium-ion batteries. Our careful formulation of ethylene carbonate (EC), ethyl methyl carbonate (EMC), and vinylene carbonate (VC) provides superior electrochemical stability and low viscosity. Additionally, the VC additive contributes to the formation of a solid-electrolyte interface (SEI) during operation, which enhances performance at high operating temperatures, including rate capability and cycling performance.,Our electrolyte exhibits compatibility with a broad range of cathode and anode materials, such as graphite, lithium metal, silicon, LFP, and NMCs, giving versatile battery design options for numerous applications.

Palabra de señalización

Danger

Clasificaciones de peligro

Acute Tox. 4 Oral - Eye Dam. 1 - Flam. Liq. 2 - Skin Corr. 1A - Skin Sens. 1 - STOT RE 1 Inhalation - STOT RE 2 Oral

Órganos de actuación

Bone,Teeth, Kidney

Código de clase de almacenamiento

3 - Flammable liquids

Clase de riesgo para el agua (WGK)

WGK 2

Punto de inflamabilidad (°F)

71.6 °F

Punto de inflamabilidad (°C)

22 °C


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Visite la Librería de documentos

Fluoroethylene Carbonate and Vinylene Carbonate Reduction: Understanding Lithium-Ion Battery Electrolyte Additives and Solid Electrolyte Interphase Formation
Alison L, et al.
Chemistry of Materials, 28, 8149?8159-8149?8159 (2016)
Effect of Vinylethylene Carbonate and Fluoroethylene Carbonate Electrolyte Additives on the Performance of Lithia-Based Cathodes
Lee S Y, et al.
ACS Omega, 5, 3579-3587 (2020)
Analysis of Vinylene Carbonate (VC) as Additive in Graphite/LiNi0.5Mn1.5O4 Cells
Pritz D, et al.
Journal of the Electrochemical Society, 164, A2625-A2635 (2017)

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