Framework structure engineering of polymeric carbon nitrides and its recent applications

B Tian, D Ho, J Qin, J Hu, Z Chen, D Voiry… - Progress in Materials …, 2023 - Elsevier
Polymeric carbon nitrides (CN) as star semiconductive materials have attracted increasing
attention owing to its numerous superior features, such as facile synthesis, non-toxicity, earth …

Interfaces Engineering Toward Stable Lithium-Sulfur Batteries

Y Huang, Y Guo, Q Niu, F Pei, Q Wang… - Energy & …, 2024 - pubs.rsc.org
The lithium–sulfur battery, one of the most potential high-energy-density rechargeable
batteries, has obtained significant progress in overcoming challenges from both sulfur …

[PDF][PDF] Application of organosulfur compounds in lithium-sulfur batteries

Z Qu, X Zhang, R Xiao, Z Sun, F Li - Acta Phys. Chim. Sin., 2023 - whxb.pku.edu.cn
Lithium-sulfur batteries are one of the prospective nextgeneration power sources that can
replace commercial lithium-ion batteries owing to their high theoretical energy density …

A Mott–Schottky heterogeneous layer for Li–S batteries: enabling both high stability and commercial‐sulfur utilization

M Shi, Z Liu, S Zhang, S Liang, Y Jiang… - Advanced Energy …, 2022 - Wiley Online Library
Lithium–sulfur batteries (LSBs) are severely impeded by their poor cycling stability and low
sulfur utilization due to the inevitable polysulfide shuttle effect and sluggish reaction kinetics …

Direct Z-scheme polymeric heterojunction boosts photocatalytic hydrogen production via a rebuilt extended π-delocalized network

L Xu, B Tian, T Wang, Y Yu, Y Wu, J Cui… - Energy & …, 2022 - pubs.rsc.org
Carrier recombination involved in polymeric photocatalysts includes undissociated exciton
decay and charge recombination, which are the major hindrance limiting their photocatalytic …

[HTML][HTML] Sputtered MoN nanolayer as a multifunctional polysulfide catalyst for high-performance lithium–sulfur batteries

XY Yue, J Zhang, J Bao, YF Bai, XL Li, SY Yang, ZW Fu… - EScience, 2022 - Elsevier
Two major obstacles for the practical application of lithium–sulfur batteries are sluggish
redox kinetics and the shuttle effect of lithium polysulfides (LiPSs). Herein, MoN nanolayer …

Enhanced chemisorption and catalytic conversion of polysulfides via CoFe@ NC nanocubes modified separator for superior Li–S batteries

Y Wang, L Zhu, J Wang, Z Zhang, J Yu… - Chemical Engineering …, 2022 - Elsevier
The coordination mechanism of adjusting the chemical adsorption and catalytic conversion
of polysulfides plays a key role in the development of high energy density lithium-sulfur (Li …

Rechargeable metal-sulfur batteries: Key materials to mechanisms

W Yao, K Liao, T Lai, H Sul, A Manthiram - Chemical Reviews, 2024 - ACS Publications
Rechargeable metal-sulfur batteries are considered promising candidates for energy
storage due to their high energy density along with high natural abundance and low cost of …

Elucidating the volcanic-type catalytic behavior in lithium–sulfur batteries via defect engineering

Y Guo, J Li, G Yuan, J Guo, Y Zheng, Y Huang… - ACS …, 2023 - ACS Publications
Defects are generally considered to be effective and flexible in the catalytic reactions of
lithium–sulfur batteries. However, the influence of the defect concentration on catalysis …

Synergistic effect of adsorption and electrocatalysis of CoO/NiO heterostructure nanosheet assembled nanocages for high-performance lithium–sulfur batteries

L Wu, J Hu, X Yang, Z Liang, S Chen, L Liu… - Journal of Materials …, 2022 - pubs.rsc.org
The dissolution and sluggish redox kinetics of lithium polysulfides (LiPSs) hinder the
practical electrochemical performance of lithium–sulfur (Li–S) batteries. The modification of …