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Lithium bis(trifluoromethanesulphonyl)imide CAS 90076-65-6 Россия

Chemical name: Lithium bis(trifluoromethanesulphonyl)imide

Synonymous names:LiTFSI;N-lithiotrifluoromethanesulfonimide;Lithium bis(trifluoromethane sulfonimide)

CAS No:90076-65-6

Molecular formula:C2F6LiNO4S2

Molecular weight:287.09

EINECS No:415-300-0

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Structural formula  Lithium bis(trifluoromethanesulphonyl)imide CAS 90076-65-6 details

Product Description

Items

Specifications

Appearance

White powder

Water

Max 0.05%

Content

Min 99.5%

Sulfate concentration (ppm)

Max 20

Fluoride – (ppm)

Max 20

Chloride – (ppm)

Max 10

Sodium (ppm)

Max 10

Potassium (ppm)

Max 10

pH

6-8

 

Properties and Usage:

Lithium bistrifluoromethanesulfonimide (LiTFSI for short) is a high-performance lithium salt mainly used in lithium-ion batteries and related electrochemical fields. Its excellent ionic conductivity and chemical stability make it an indispensable material in electrochemical technology.

 

1. Lithium-ion battery electrolyte: LiTFSI, as the core component of the electrolyte, can significantly increase the conductivity of lithium-ion batteries, thereby improving the energy density and cycle life of the battery. Its fluorine chemical group provides good ionic conductivity, especially under high and low temperature conditions.

 

 

2. Supercapacitor: Among supercapacitors, LiTFSI’s high ionic conductivity and excellent chemical stability can effectively improve energy storage capacity and extend service life, making it an ideal choice for efficient energy storage devices.

 

 

3. Electrolyte membranes and coatings: LiTFSI is used in electrolyte membranes and coatings in electrochemical equipment to enhance the ionic conductivity of the membrane and improve its mechanical and chemical stability, making it suitable for various electrochemical applications.

 

 

4. Electrochemical research: In the development and testing of battery materials, LiTFSI’s good conductivity and stability make it a key material for the study of new electrolyte systems, helping to explore performance in different electrochemical environments.

 

 

5. Conductive polymers and gel electrolytes: In the preparation of conductive polymers and gel electrolytes, LiTFSI improves the ionic conductivity of these materials, expands their applicability in batteries and other electrochemical applications, and improves overall performance.

 

 

6. Solid-state batteries: LiTFSI is often used as the electrolyte in solid-state batteries to enhance the ionic conductivity of the solid-state electrolyte, thereby improving the overall performance and safety of the battery, and is suitable for new generation battery technology.

 

Storage conditions: Dry, cool, closed place, in an inert gas environment

Packing: This product is packed in 25kg 50kg cardboard drums, and it can also be customized according to customers' requirements

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