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  • 2025-03-10
    The electrolyte in a lithium-ion battery typically consists of a lithium salt, such as LiPF₆ (lithium hexafluorophosphate) or LiFSI (lithium bis(fluorosulfonyl)imide), dissolved in a mixture of organic solvents. Commonly used solvents include ethylene carbonate (EC), propylene carbonate (PC), dimethyl carbonate (DMC), and ethyl methyl carbonate (EMC). Ethylene carbonate and propylene carbonate con
  • 2025-03-06
    Lithium Triflate is an important chemical that has a wide range of uses.
  • 2025-03-05
    Ecovia is mainly engaged in the research and development, production and sales of trifluoromethanesulfonic acid derivatives products, which are mainly used in integrated circuits, display panels and other semiconductor manufacturing processes.
  • 2025-03-04
    Zinc Triflate is a white to light gray powder, hygroscopic, very soluble in water. It is commonly used as a Lewis acid catalyst, e.g., for silylation reactions. Zinc trifluoromethanesulfonate has been widely used as an efficient Lewis acid catalyst in recent years.
  • 2025-03-02
    In the field of electrochemistry, lithium salt is the “king” of electrolyte, especially for lithium batteries, its importance is self-evident. This article introduces the lithium salts mainly used in current practical applications.
  • 2025-03-01
    Electrolyte solvents are mainly carbonate solvents (organic solvents) including cyclic carbonate (PC, EC), linear carbonate (DMC, DEC, EMC) and so on. Different solvents have different properties corresponding to different battery functions. New types of solvents such as carboxylic acid ester and sulfite ester are yet to be developed. Carbonate solvents have the advantages of good electrochemical
  • 2025-02-27
    Dimethyl carbonate is an important solvent for lithium-ion battery electrolyte, as well as a solvent for specialty spices and intermediates, showing its potential in the field of new energy and fine chemicals.
  • 2025-02-16
    Triflic acid has significant advantages over sulfuric acid in various production activities, mainly due to its stronger acidity and higher reactivity. Due to the electron-attracting effect of the trifluoromethyl (CF₃) group, triflic acid is able to release hydrogen ions more readily, facilitating more efficient reactions, and is especially superior in synthesis reactions requiring strong acid cata

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