Vinyl Ethylene Carbonate (VEC) CAS 4427-96-7 4-Vinyl-1,3-dioxolan-2-one Purity >99.5% (GC)

Chemical Name: Vinyl Ethylene Carbonate (VEC) Synonyms: 4-Vinyl-1,3-dioxolan-2-one  CAS: 4427-96-7 Purity: ≥99.50% (GC)  Appearance: Colorless Liquid Used as a Highly Reactive Film-Forming Additive in Lithium Secondary Batteries E-Mail: alvin@ruifuchem.com

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Package: Fluorinated Bottle, 25kg/Drum, or according to customer's requirement. Storage Condition: Store in sealed containers at cool and dry place; Protect from light and moisture.Shanghai Ruifu Chemical Co., Ltd. is the leading manufacturer and supplier of Vinyl Ethylene Carbonate (VEC) (CAS: 4427-96-7) with high quality, commercial production. Ruifu Chemical offers a wide range of lithium-ion battery materials such as electrolyte raw materials and cathode materials. Welcome to order. Please contact: alvin@ruifuchem.com
Item Specifications
Appearance Colorless Liquid
Purity / Analysis Method >99.50% (GC) 
Refractive Index n20/D 1.448~1.452
Specific Gravity (20/20℃) 1.192~1.196
Water Content <100ppm
Color <10(APHA)
Fe <5ppm
Cl-  <5ppm
SO42- <10ppm
Infrared Spectrum Conforms to Structure
Test Standard Enterprise Standard
Shelf Life Two Years

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Chemical Name Vinyl Ethylene Carbonate
Synonyms VEC; 4-Vinyl-1,3-dioxolan-2-one; 2-Oxo-4-vinyl-1,3-dioxolane; Vinylethylene Carbonate
CAS Number 4427-96-7
CAT Number RF-PI1775
Stock Status In Stock, Production Scale Up to Tons
Molecular Formula C5H6O3
Molecular Weight 114.10
Brand Ruifu Chemical

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Application:

Vinyl Ethylene Carbonate (VEC) (CAS: 4427-96-7) is used as a highly reactive film-forming additive in lithium secondary batteries; employed in the synthesis of functional polymers. VEC has high dielectric constant, high boiling point and flash point, which is beneficial to improve the safety performance of lithium ion battery. VEC begins to decompose at 1.35V, and can form a stable and dense SEI film on flake graphite, which effectively prevents PC and solvated lithium ion from co-embedding into the graphite layer, and inhibits the decomposition of electrolyte to a minimum, thus improving the charge and discharge efficiency and cycling characteristics of lithium ion battery. The chemical properties are stable. When a certain amount of VEC is added to the electrolyte at a suitable temperature, the cyclic performance of the cathode metal can be significantly improved. After several charge-discharge cycles, the retained discharge capacity can be increased from 68.8% to 84.8%.

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