首页|ZnMn2O4@Mo6S_(9.5)hierarchical mesoporous microflowers for Li-ion batteries

ZnMn2O4@Mo6S_(9.5)hierarchical mesoporous microflowers for Li-ion batteries

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ZnMn2O4@Mo6S_(9.5)hierarchical mesoporous microflowers have been constructed for anode applications in Li-ion batteries(LIBs).Ultrathin Mo6S_(9.5)nanosheets have grown on ZnMn2O4 microspheres by hydrothermal method and calcination process to synthesis ZnMn2O4@Mo6S_(9.5)hierarchical mesoporous microflowers(HMMs).The initial discharge/charge capacities of ZnMn2O4@Mo6S_(9.5)HMMs were 1203/846 mA h g~(-1).After high-current cycles,reversible capacity was 731 mA h g~(-1)at 100 mA g~(-1),which was close to that of the first 10 turns.The excellent performance could be ascribed to the synergistic effect among ZnMn2O45 Mo6S_(9.5)and the 3D hierarchical architecture.The results demonstrate that ZnMn2O4@Mo6S_(9.5)HMMs have broad application prospect as electrochemical energy storage device.

Hierarchical mesoporous microflowersZnMn2O4@Mo6S_(9.5)Anode materialLi-ion batteries

Hongfang Jiu、Qing Zhang、Lixin Zhang

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School of Science,North University of China,Taiyuan,030051,People's Republic of China

Shanxi Key Laboratory of High Performance Battery Materials and Devices,North University of China,Taiyuan,030051,People's Republic of China

2022

Microporous and mesoporous materials

Microporous and mesoporous materials

EISCI
ISSN:1387-1811
年,卷(期):2022.339
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