MOF-808-derived Ce-doped ZrOF composite as an efficient polysulfide inhibitor for advanced lithium-sulfur batteries
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference57 articles.
1. Exploring chemical, mechanical, and electrical functionalities of binders for advanced energy-storage devices;Chen;Chem. Rev.,2018
2. Aligned sulfur-deficient ZnS1−x nanotube arrays as efficient catalyzer for high-performance lithium/sulfur batteries;Wang;Nano Energy,2021
3. Strong chemical interaction between lithium polysulfides and flame-retardant polyphosphazene for lithium-sulfur batteries with enhanced safety and electrochemical performance;Chen;Adv. Mater.,2021
4. Free-standing 3D nitrogen-doped graphene/Co4N aerogels with ultrahigh sulfur loading for high volumetric energy density Li-S batteries;Cheng;J. Alloy. Compd.,2022
5. Towards high-performance solid-state Li-S batteries: from fundamental understanding to engineering design;Yang;Chem. Soc. Rev.,2020
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2. Enhancing the degradation efficiency of dimethyl nitrophenyl Phosphate, a chemical warfare agent Simulant, through acid sites in bimetallic Metal-Organic framework Ti-MOF-808(Zr): Synergistic roles of Lewis and Brønsted acids;Applied Surface Science;2024-05
3. Room-temperature aqueous synthesis of MOF-808(Zr) for selective adsorption of dye mixtures;Separation and Purification Technology;2024-04
4. Ultrathin MoS2 nanosheets grown on hollow carbon spheres as advanced separator coating for superior electrochemical behaviors of Li–S batteries;Ionics;2023-03-24
5. Recent Development in Novel Lithium-Sulfur Nanofiber Separators: A Review of the Latest Fabrication and Performance Optimizations;Membranes;2023-02-02
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