Improving the rate and cycle performance of V-based cathodes through regulation of the Zn2+ desolvation process

Author:

Deng ShiyaoORCID,Jiang Yu,Qu Yongheng,Li Aixin,Zhang Ruijie,Xie ZhizhongORCID

Funder

Hubei Province Natural Science Foundation

Publisher

Elsevier BV

Reference46 articles.

1. Fe-doping enabled a stable vanadium oxide cathode with rapid Zn diffusion channel for aqueous zinc-ion batteries;Wu;Mater. Today Energy,2021

2. Long-life vanadium oxide cathode for zinc battery enabled by polypyrrole intercalation and concentrated electrolyte;Qi;Chem. Eng. J.,2023

3. Interfacial engineering of Zn metal via a Localized conjugated layer for highly reversible aqueous zinc ion battery;Liu;Angew. Chem. Int. Ed.,2024

4. Multifunctional tin layer enabled long-life and stable anode for aqueous zinc-ion batteries;Guo;Mater. Today Energy,2021

5. Zinc ion batteries: bridging the gap from academia to industry for grid-scale energy storage;Liu;Angew. Chem. Int. Ed.,2024

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