Author:
Liang Zheng,Lin Dingchang,Zhao Jie,Lu Zhenda,Liu Yayuan,Liu Chong,Lu Yingying,Wang Haotian,Yan Kai,Tao Xinyong,Cui Yi
Abstract
Lithium metal-based battery is considered one of the best energy storage systems due to its high theoretical capacity and lowest anode potential of all. However, dendritic growth and virtually relative infinity volume change during long-term cycling often lead to severe safety hazards and catastrophic failure. Here, a stable lithium–scaffold composite electrode is developed by lithium melt infusion into a 3D porous carbon matrix with “lithiophilic” coating. Lithium is uniformly entrapped on the matrix surface and in the 3D structure. The resulting composite electrode possesses a high conductive surface area and excellent structural stability upon galvanostatic cycling. We showed stable cycling of this composite electrode with small Li plating/stripping overpotential (<90 mV) at a high current density of 3 mA/cm2 over 80 cycles.
Publisher
Proceedings of the National Academy of Sciences
Cited by
785 articles.
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