Efficient Co0.85Se-CNT sulfur cathode derived from strong catalyst-support interactions: Contribution of adsorption-catalysis mechanism to the redox kinetics of polysulfides
Author:
Funder
National Natural Science Foundation of China
Science, Technology and Innovation Commission of Shenzhen Municipality
Publisher
Elsevier BV
Reference53 articles.
1. Unraveling the atomic-level manipulation mechanism of Li2S redox kinetics via electron-donor doping for designing high-volumetric-energy-density, lean-electrolyte lithium-sulfur batteries;Shan;Adv. Sci.,2022
2. Sulfur reduction catalyst design inspired by elemental periodic expansion concept for lithium-sulfur batteries;Dong;ACS Nano,2022
3. An integrated approach to configure rGO/VS4/S composites with improved catalysis of polysulfides for advanced lithium–sulfur batteries;Li;Chinese Chem. Lett.,2022
4. Revealing the origin of highly efficient polysulfide anchoring and transformation on anion-substituted vanadium nitride host;Tan;Adv. Funct. Mater.,2020
5. Universal-descriptors-guided Design of Single Atom Catalysts toward oxidation of Li2S in lithium-sulfur batteries;Zeng;Adv. Sci.,2021
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