Toray Paper- TGP-T-060 - is a carbon fiber composite paper suitable for use as a catalyst backing layer for fuel cells,electrolyzers, batteries, and various other electrochemical devices after applying a microporous layer (MPL) onto it.
It is specially designed for button batteries (2032, 2025, 2016) to use composite sodium sheets, with a diameter of 15.6mm, a thickness of 0.4~0.5 mm, and a purity of more than 99.7%.
Compared with traditional copper foil, PET substrate has good safety performance, light weight, and good ductility, which can help improve the energy density of batteries.
Composite aluminum foil is a new-type of battery current collector, which has thinner aluminum film, overall lighter weight, and higher safty during penetration expeirment compared to the conventional rolling aluminum foil.
The chemical formula of sodium iron sulfate is Na2Fe2 (SO4) 3, and its structure is composed of sodium ions Composed of iron ions and sulfate ions. In electrochemical reactions, sodium iron sulfate can release or absorb metal ions such as lithium ions and sodium ions through ion exchange reactions, achieving the charging and discharging process of 1
Lithium difluorooxalate borate is a white powder or crystal powder, similar to LiBOB. Li+ in LiODFB has a quintuple coordination structure, which easily combines with other molecules to form a regular octahedral coordination structure, and can absorb moisture in air to form LiODFB·H2O. Nowadays, the research of lithium-ion battery is hot, and the c1
This atmosphere box furnace with resistance wire heating element, using double layer shell structure and program temperature control instrument. The furnace is made of alumina polycrystal fiber material, and the double furnace shell is equipped with air cooling system, which can raise and lower the temperature quickly. Can pass argon, nitrogen, oxy1
Usage: Used to improve cycle life, improve lithium-ion battery performance; As a film forming additive, LiBF4 has been widely used in current electrolytes, adding LiBF4 can broaden the operating temperature range of lithium-ion batteries and improve the high and low temperature discharge performance of batteries.
In lithium-ion batteries, the main role of LiBOB is to transport particles and conduct current. To perform these tasks effectively, it requires high solubility and conductivity, good chemical stability, and a wide electrochemical window. The anionic structure of LiBOB molecule has delocalization, which makes it exhibit excellent performance in the 1
LiFSI has good solubility in common organic solvents and can be fully mixed with solvents and other components in the electrolyte to improve the uniformity and stability of the battery's electrolyte. LiFSI electrolyte has good compatibility with the two main components of SEI film, and only replaces some of its components at 160°C. LiFSI can make u1