Pseudo high-concentration ester lithium-sulfur battery electrolyte and lithium-sulfur battery
A lithium-sulfur battery and electrolyte technology, applied in the field of lithium-sulfur batteries, can solve the problems of slow lithium ion migration rate, low conductivity and high electrolyte viscosity
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Embodiment 1
[0027] A lithium-ion battery electrolyte, including 1,3 dioxolane (DOL) and ethylene glycol dimethyl ether (DME) two ether solvents, with LiTFSI as lithium salt. The preparation method is as follows: mix DOL and DME at a volume ratio of 1:1, and then add LiTFSI to make the concentration reach 5.0 mol / L. Afterwards, HFMOP is added to the electrolyte, so that the mass fraction of HFMOP in the electrolyte is 40%, so as to obtain the lithium-sulfur battery electrolyte.
Embodiment 2
[0029] A lithium-ion battery electrolyte, including 1,3 dioxolane (DOL) and ethylene glycol dimethyl ether (DME) two ether solvents, with LiTFSI as lithium salt. The preparation method is as follows: mix DOL and DME at a volume ratio of 1:1, and then add LiTFSI to make the concentration reach 5.0 mol / L. Then add HFEOP to the electrolyte, so that the mass fraction of HFEOP in the electrolyte is 50%, to obtain the lithium-sulfur battery electrolyte.
Embodiment 3
[0031] A lithium-ion battery electrolyte, including 1,3 dioxolane (DOL) and ethylene glycol dimethyl ether (DME) two ether solvents, with LiTFSI as lithium salt. The preparation method is as follows: mix DOL and DME at a volume ratio of 1:1, and then add LiTFSI to make the concentration reach 5.0 mol / L. Then add HFTFPOP to the electrolyte, so that the mass fraction of HFTFPOP in the electrolyte is 60%, to obtain the lithium-sulfur battery electrolyte.
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Abstract
Description
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Application Information
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