Lithium metal is strongly recognized as a promising anode material for next-generation high-energy-density systems. However, unstable solid electrolyte interphase and uncontrolled lithium dendrites growth induce severe capacity decay and short cycle life accompanied by high security risks. Here, we propose a simple method for constructing an artificial solid electrolyte interphase layer on the surface of lithium metal through spontaneous reaction, where ammonium persulfate and lithium nitrate are exploited as oxidants. The satisfactory artificial protective layer with uniform and dense morphology is composed of mixed lithium compounds, mainly including LixSOy and LixNOy species, which could effectively stabilize the interphase between elect...
International audienceControlling the composition and microstructure of the solid electrolyte interp...
The lithium–sulfur battery is considered to be one of the most promising rechargeable energy storage...
An ionic liquid ether double-solvent electrolyte, comprising 1 M Li[(CF3SO2)(n-C4F9SO2)N] dissolv...
Copyright © 2018 American Chemical Society. Lithium metal is strongly recognized as a promising anod...
© 2020 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Li metal has been widely regarded as a promising a...
Li metal has been widely regarded as a promising anode for next-generation batteries due to its high...
Li metal is among the most attractive anode materials for secondary batteries, with a theoretical sp...
The application of Li–S batteries suffers from many issues, polysulfide dissolution in particular. T...
Increasing demands for advanced lithium batteries with higher energy density have resurrected the us...
Lithium–sulfur (Li/S) batteries suffer from “shuttle” reactions in which soluble polysulfide species...
Lithium–sulfur (Li/S) batteries suffer from “shuttle” reactions in which soluble polysulfide species...
Thanks to its high specific capacity and low electrochemical potential, lithium metal is an ideal an...
The growth and proliferation of Li dendrites during repeated Li cycling has long been a crucial issu...
Lithium–sulfur (Li–S) batteries are a promising next-generation battery chemistry, but the challenge...
Lithium metals have been considered as the most promising anode materials for next-generation rechar...
International audienceControlling the composition and microstructure of the solid electrolyte interp...
The lithium–sulfur battery is considered to be one of the most promising rechargeable energy storage...
An ionic liquid ether double-solvent electrolyte, comprising 1 M Li[(CF3SO2)(n-C4F9SO2)N] dissolv...
Copyright © 2018 American Chemical Society. Lithium metal is strongly recognized as a promising anod...
© 2020 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Li metal has been widely regarded as a promising a...
Li metal has been widely regarded as a promising anode for next-generation batteries due to its high...
Li metal is among the most attractive anode materials for secondary batteries, with a theoretical sp...
The application of Li–S batteries suffers from many issues, polysulfide dissolution in particular. T...
Increasing demands for advanced lithium batteries with higher energy density have resurrected the us...
Lithium–sulfur (Li/S) batteries suffer from “shuttle” reactions in which soluble polysulfide species...
Lithium–sulfur (Li/S) batteries suffer from “shuttle” reactions in which soluble polysulfide species...
Thanks to its high specific capacity and low electrochemical potential, lithium metal is an ideal an...
The growth and proliferation of Li dendrites during repeated Li cycling has long been a crucial issu...
Lithium–sulfur (Li–S) batteries are a promising next-generation battery chemistry, but the challenge...
Lithium metals have been considered as the most promising anode materials for next-generation rechar...
International audienceControlling the composition and microstructure of the solid electrolyte interp...
The lithium–sulfur battery is considered to be one of the most promising rechargeable energy storage...
An ionic liquid ether double-solvent electrolyte, comprising 1 M Li[(CF3SO2)(n-C4F9SO2)N] dissolv...