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(FeNiMnMgCuCo)3O4 High-Entropy Cathode for Zinc-Ion Batteries
by
Jiang, Renzhi
, Cai, Yuncheng
, Dong, Ningning
, Cui, Huanhuan
in
Batteries
/ Cathodes
/ Communication
/ Composition
/ Crystal structure
/ Cycles
/ Electric vehicles
/ Electrochemical analysis
/ Electrochemistry
/ Electrode materials
/ Electrodes
/ Electrolytes
/ Energy storage
/ Entropy
/ Ion storage
/ Metal oxides
/ Morphology
/ Nanoparticles
/ Reaction kinetics
/ Scanning electron microscopy
/ Stability
/ Transmission electron microscopy
/ Valence
/ Zinc
2026
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(FeNiMnMgCuCo)3O4 High-Entropy Cathode for Zinc-Ion Batteries
by
Jiang, Renzhi
, Cai, Yuncheng
, Dong, Ningning
, Cui, Huanhuan
in
Batteries
/ Cathodes
/ Communication
/ Composition
/ Crystal structure
/ Cycles
/ Electric vehicles
/ Electrochemical analysis
/ Electrochemistry
/ Electrode materials
/ Electrodes
/ Electrolytes
/ Energy storage
/ Entropy
/ Ion storage
/ Metal oxides
/ Morphology
/ Nanoparticles
/ Reaction kinetics
/ Scanning electron microscopy
/ Stability
/ Transmission electron microscopy
/ Valence
/ Zinc
2026
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(FeNiMnMgCuCo)3O4 High-Entropy Cathode for Zinc-Ion Batteries
by
Jiang, Renzhi
, Cai, Yuncheng
, Dong, Ningning
, Cui, Huanhuan
in
Batteries
/ Cathodes
/ Communication
/ Composition
/ Crystal structure
/ Cycles
/ Electric vehicles
/ Electrochemical analysis
/ Electrochemistry
/ Electrode materials
/ Electrodes
/ Electrolytes
/ Energy storage
/ Entropy
/ Ion storage
/ Metal oxides
/ Morphology
/ Nanoparticles
/ Reaction kinetics
/ Scanning electron microscopy
/ Stability
/ Transmission electron microscopy
/ Valence
/ Zinc
2026
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(FeNiMnMgCuCo)3O4 High-Entropy Cathode for Zinc-Ion Batteries
Journal Article
(FeNiMnMgCuCo)3O4 High-Entropy Cathode for Zinc-Ion Batteries
2026
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Overview
As a result of the high safety, low cost, and environmental benignity, aqueous zinc-ion batteries are regarded as one of the most promising candidates for next-generation large-scale energy storage systems. However, their further development is constrained by performance bottlenecks in existing cathode materials, including capacity, cycle life, and reaction kinetics. In this study, a high-entropy design strategy is employed to synthesize the metal oxide (FeNiMnMgCuCo)3O4 with a cubic spinel structure, and its electrochemical performance as a cathode for zinc-ion batteries is systematically evaluated. The prepared (FeNiMnMgCuCo)3O4 high-entropy cathode exhibits high reversible capacity (341.3 mA h g−1 at 0.1 A g−1) and remarkable long-term cycling stability (76.1% retention after 1000 cycles at 3 A g−1). This work not only demonstrates a high-entropy cathode material with practical potential but also provides new research insights for optimizing zinc-ion storage performance through composition design and entropy regulation.
Publisher
MDPI AG,Multidisciplinary Digital Publishing Institute (MDPI)
Subject
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