Understanding the synergistic improving adsorbed and catalytic activity of polysulfide by design of oxygen vacancies and Li+ lithiation/delithiation behavior in Titanium Oxide separator
Author:
Funder
Shaanxi Province Natural Science Foundation
National Natural Science Foundation of China
Publisher
Elsevier BV
Reference86 articles.
1. Multi-electron reaction materials for high energy density batteries;Gao;Energy Environ. Sci.,2010
2. Strategies toward high-loading lithium–sulfur battery;Hu;Adv. Energy Mater,2020
3. A high-performance tellurium-sulfur cathode in carbonate-based electrolytes;Zhang;Nano Energy,2023
4. Crystal defect modulation in cathode materials for non-lithium ion batteries: progress and challenges;Xiong;Mater. Today,2021
5. Super-assembled hierarchical CoO nanosheets-Cu foam composites as multi-level hosts for high-performance lithium metal anodes;Zhang;Small,2021
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1. Advanced Separator Materials for Enhanced Electrochemical Performance of Lithium–Sulfur Batteries: Progress and Prospects;Langmuir;2024-07-23
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