Interface Engineering Toward Expedited Li2S Deposition in Lithium–Sulfur Batteries: A Critical Review

J Sun, Y Liu, L Liu, J Bi, S Wang, Z Du, H Du… - Advanced …, 2023 - Wiley Online Library
Lithium–sulfur batteries (LSBs) with superior energy density are among the most promising
candidates of next‐generation energy storage techniques. As the key step contributing to …

Boosting lean electrolyte lithium–sulfur battery performance with transition metals: a comprehensive review

H Pan, Z Cheng, Z Zhou, S Xie, W Zhang, N Han… - Nano-Micro Letters, 2023 - Springer
Abstract Lithium–sulfur (Li–S) batteries have received widespread attention, and lean
electrolyte Li–S batteries have attracted additional interest because of their higher energy …

Manipulating redox kinetics of sulfur species using Mott–Schottky electrocatalysts for advanced lithium–sulfur batteries

Y Li, W Wang, B Zhang, L Fu, M Wan, G Li, Z Cai… - Nano Letters, 2021 - ACS Publications
Lithium–sulfur (Li–S) batteries suffer from sluggish sulfur redox reactions under high-sulfur-
loading and lean-electrolyte conditions. Herein, a typical Co@ NC heterostructure …

Controllable catalysis behavior for high performance lithium sulfur batteries: From kinetics to strategies

G Cao, R Duan, X Li - EnergyChem, 2023 - Elsevier
Lithium-sulfur batteries (LSBs) with high energy density have been drawn the tremendous
interests in academia as well as industry. Nevertheless, sluggish redox kinetics of sulfur …

Crystalline molybdenum carbide− amorphous molybdenum oxide heterostructures: in situ surface reconfiguration and electronic states modulation for Li− S batteries

B Qin, Y Cai, P Wang, YC Zou, J Cao, J Qi - Energy Storage Materials, 2022 - Elsevier
Designing heterostructure electrocatalysts synergizing highly polar component and
conductive matrix hold great promise to regulate lithium polysulfides (LiPSs) toward high …

Suppressing the shuttle effect and dendrite growth in lithium–sulfur batteries

J Wang, S Yi, J Liu, S Sun, Y Liu, D Yang, K Xi, G Gao… - Acs Nano, 2020 - ACS Publications
Practical applications of lithium–sulfur batteries are simultaneously hindered by two serious
problems occurring separately in both electrodes, namely, the shuttle effects of lithium …

Fast conversion and controlled deposition of lithium (poly) sulfides in lithium-sulfur batteries using high-loading cobalt single atoms

Y Li, J Wu, B Zhang, W Wang, G Zhang, ZW Seh… - Energy Storage …, 2020 - Elsevier
Abstract Lithium-sulfur (Li–S) batteries are appealing energy storage technologies owing to
their exceptional energy density. Their practical applications, however, are largely …

Enhancing polysulfide confinement and electrochemical kinetics by amorphous cobalt phosphide for highly efficient lithium–sulfur batteries

R Sun, Y Bai, M Luo, M Qu, Z Wang, W Sun, K Sun - ACS nano, 2020 - ACS Publications
The application of lithium–sulfur (Li–S) batteries is severely hampered by the shuttle effect
and sluggish redox kinetics. Herein, amorphous cobalt phosphide grown on a reduced …

Enhanced Catalytic Conversion of Polysulfides Using Bimetallic Co7Fe3 for High-Performance Lithium–Sulfur Batteries

P Zeng, C Liu, X Zhao, C Yuan, Y Chen, H Lin… - ACS …, 2020 - ACS Publications
Practical applications of lithium–sulfur (Li–S) batteries have been severely hindered by their
low capacity, poor rate performance, and fast capacity degradation, which mainly originate …

Emerging catalytic materials for practical lithium-sulfur batteries

F Shi, L Zhai, Q Liu, J Yu, SP Lau, BY Xia… - Journal of Energy …, 2023 - Elsevier
High-energy lithium-sulfur batteries (LSBs) have experienced relentless development over
the past decade with discernible improvements in electrochemical performance. However, a …