Promoting cycle stability and rate performance of birnessite-type MnO2 cathode via cupper and bismuth dual ions pre-intercalation for aqueous zinc-ion batteries

Author:

Sun Yuqing,Zhuang Shuxin,Ren Yan,Jiang Shengyu,Pan Xiaoxiao,Sun Gaoxing,Zhu Bin,Wen Yanfen,Li Xiaodan,Tu Feiyue,Guo Jun

Funder

Fujian Provincial Natural Science Foundation

Publisher

Elsevier BV

Subject

Electrical and Electronic Engineering,Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment

Reference49 articles.

1. Developing cathode materials for aqueous zinc ion batteries: challenges and practical prospects;Li;Adv. Funct. Mater.,2023

2. Recent advances on challenges and strategies of manganese dioxide cathodes for aqueous zinc-ion batteries;Xu;Energy Environ. Mater.,2022

3. Nanostructure design strategies for aqueous zinc-ion batteries;Ling;Chem. Electro. Chem.,2020

4. Rechargeable Zn-ion batteries with high power and energy densities: a two-electron reaction pathway in birnessite MnO2 cathode materials;Li;J. Mater. Chem. A,2020

5. A non-flammable hydrous organic electrolyte for sustainable zinc batteries;Han;Nat. Sustain.,2022

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