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Electrolyte solutions design for lithium-sulfur batteries
Yatao Liu
, Yuval Elias
, Jiashen Meng
,
Doron Aurbach
, Ruqiang Zou
, Dingguo Xia
, Quanquan Pang
Israel National Research Center for Electrochemical Propulsion
BINA Research Center - Energy
Peking University
Bar-Ilan University
Research output
:
Contribution to journal
›
Review article
›
peer-review
447
Scopus citations
Overview
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Keyphrases
Electrolyte Solution
100%
Lithium-sulfur Batteries
100%
Solution Design
100%
Sulfur
50%
Polysulfide
50%
Solvation
50%
Salt Concentration
25%
Energy Density
25%
Electrolyte
25%
Side Reactions
25%
High Energy Density
25%
Lithium-ion Battery
25%
Cycling Performance
25%
Sulfur Reduction
25%
Polysulfide Species
25%
Film Formation
25%
Lithium Metal Anode
25%
Reaction Pathway
25%
Solution Chemistry
25%
Li Deposition
25%
Solution Analysis
25%
Protective Surface Film
25%
Multidimensional Analysis
25%
Energy Storage System
25%
Solution Properties
25%
Generation Power
25%
Polysulfide Solubility
25%
Li2S Deposition
25%
Conversion Chemistry
25%
Battery Cycle Life
25%
Energy Cycling
25%
Chemistry
Electrolyte
100%
Lithium-Sulfur Battery
100%
Chemistry
75%
Solvation
50%
Liquid Film
25%
Protective
25%
Battery (Electrochemical Energy Engineering)
25%
Lithium Ion Battery
25%
Energy Storage
25%
Lithium Metal Anode
25%
Sulfur Reaction
25%
Dimensional Analysis
25%
Material Science
Polysulfide
100%
Lithium-Sulfur Battery
100%
Energy Density
50%
Solvation
50%
Lithium Ion Battery
25%
Lithium Metal Anode
25%
Battery (Electrochemical Energy Engineering)
25%
Solution Chemistry
25%
Film Growth
25%
Pharmacology, Toxicology and Pharmaceutical Science
Sulfur
100%
Electrolyte Solution
100%
Polysulfide
57%
Lithium Ion
14%
Critical Effect
14%
Sodium Chloride
14%
Chemical Engineering
Polysulfide
100%