Highly stabilized FeS2 cathode design and energy storage mechanism study for advanced aqueous FeS2–Cu battery

Author:

Chen Jiajun,Zhao Zhenxin,Niu Rong,Yao Yikun,Liang Mingfan,Huang Qilong,Wang XiaominORCID

Funder

Key Science and Technology Research Project in Jiangxi Province Department of Education

Key Research and Development Program of Sichuan Province

Project of Shandong Province Higher Educational Science and Technology Program

Science and Technology Innovation Group of Shanxi Province

National Natural Science Foundation of China

National Aerospace Science Foundation of China

Support Program for Longyuan Youth and Fundamental Research Funds for the Universities of Gansu Province

Publisher

Elsevier BV

Reference52 articles.

1. Designing advanced aqueous zinc‐ion batteries: principles, strategies, and perspectives;Li;Energy & Environmental Materials,2022

2. Electrochemical kinetic modulators in lithium–sulfur batteries: from defect‐rich catalysts to single atomic catalysts;Zhang;Energy & Environmental Materials,2022

3. Revisiting the degradation of solid/electrolyte interfaces of magnesium metal anodes: decisive role of interfacial composition;Dou;Nano Energy,2021

4. Unraveling the atomic-level manipulation mechanism of tin-based ternary anodes via hetero-anion engineering for stable sodium ion storage;Cheng;Compos. B Eng.,2024

5. Carbon-coated monoclinic NbOPO4 with polyanionic framework for rechargeable aqueous lithium-ion batteries beyond 2 V;Liu;Electrochim. Acta,2022

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