Efficient storage of zinc ions in MoS2 is facilitated by F and P co-doping induced S vacancies
Author:
Funder
Guangxi Natural Science Foundation
Publisher
Elsevier BV
Reference64 articles.
1. Vacancy engineering of MoS2-X@NCNTs for efficient storage of zinc ions;Zhao;J. Alloys Compd.,2023
2. Review of low-temperature lithium-ion battery progress: new battery system design imperative;Worku;Int. J. Energy Res.,2022
3. Self-assembled VS2 microflowers buffering volume change during charging and discharging towards high-performance zinc ion batteries;Wang;J. Mater. Sci. Technol.,2024
4. Rechargeable batteries: technological advancement, challenges, current and emerging applications;Olabi;Energy,2023
5. Cathode materials for rechargeable zinc-ion batteries: from synthesis to mechanism and applications;Li;J. Power Sources,2020
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