Diatomite derived hierarchical hybrid anode for high performance all-solid-state lithium metal batteries

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作者
Fei Zhou
Zheng Li
Yu-Yang Lu
Bao Shen
Yong Guan
Xiu-Xia Wang
Yi-Chen Yin
Bai-Sheng Zhu
Lei-Lei Lu
Yong Ni
Yi Cui
Hong-Bin Yao
Shu-Hong Yu
机构
[1] University of Science and Technology of China,Division of Nanomaterials & Chemistry, Hefei National Laboratory for Physical Sciences at the Microscale, CAS Center for Excellence in Nanoscience, Hefei Science Center of CAS, Department of Chemistry
[2] University of Science and Technology of China,Department of Polymer Science and Engineering
[3] University of Science and Technology of China,CAS Key Laboratory of Mechanical Behavior and Design of Materials, Department of Modern Mechanics
[4] University of Science and Technology of China,National Synchrotron Radiation Laboratory
[5] University of Science and Technology of China,Center for Micro
[6] Stanford University, and Nanoscale Research and Fabrication
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摘要
Lithium metal based anode with hierarchical structure to enable high rate capability, volume change accommodation, and dendritic suppression is highly desirable for all-solid-state lithium metal battery. However, the fabrication of hierarchical lithium metal based anode is challenging due to the volatility of lithium. Here, we report that natural diatomite can act as an excellent template for constructing hierarchical silicon-lithium based hybrid anode for high performance all-solid-state lithium metal battery. This hybrid anode exhibits stable lithium stripping/plating performance over 1000 h with average overpotential lower than 100 mV without any short circuit. Moreover, all-solid-state full cell using this lithium metal composite anode to couple with lithium iron phosphate cathode shows excellent cycling stability (0.04% capacity decay rate for 500 cycles at 0.5C) and high rate capability (65 mAh g−1 at 5C). The present natural diatomite derived hybrid anode could further promote the fabrication of high performance all-solid-state lithium batteries from sustainable natural resources.
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