Ostwald Ripening Mechanism-Derived Mnooh Induces Lattice Oxygen Escape for Efficient Aqueous Mno2-Zn Batteries

Author:

Zheng Junjie,Qin Chenchen,Chen Chi,Zhang Chuankun,Shi Pei,Chen Xin,Gan Yi,Li Jingying,Yao Jia,Liu Xin,Cheng Junyan,Sun Dan,Wan Houzhao,Wang Hao

Publisher

Elsevier BV

Reference60 articles.

1. Ultrahigh loading dry-process for solvent-free lithium-ion battery electrode fabrication;M Ryu;Nature Communications,2023

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3. Disproportionation enabling reversible MnO 2 /Mn 2+ transformation in a mild aqueous Zn-MnO 2 hybrid battery;H Lv;Chemical Engineering Journal,2022

4. A LaCl 3 -based lithium superionic conductor compatible with lithium metal;Y.-C Yin;Nature,2023

5. Realizing high-capacity all-solid-state lithium-sulfur batteries using a low-density inorganic solid-state electrolyte;D Wang;Nature Communications,2023

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