石墨烯
介孔材料
材料科学
阳极
锂(药物)
氧化物
异质结
纳米技术
过电位
枝晶(数学)
化学工程
电流密度
电化学
化学
电极
光电子学
催化作用
有机化学
冶金
内分泌学
物理化学
工程类
物理
医学
量子力学
数学
几何学
作者
Haodong Shi,Jieqiong Qin,Kai Huang,Pengfei Lu,Chuanfang Zhang,Yanfeng Dong,Mao Ye,Zhongmin Liu,Zhong‐Shuai Wu
标识
DOI:10.1002/ange.202004284
摘要
Abstract Guiding the lithium ion (Li‐ion) transport for homogeneous, dispersive distribution is crucial for dendrite‐free Li anodes with high current density and long‐term cyclability, but remains challenging for the unavailable well‐designed nanostructures. Herein, we propose a two‐dimensional (2D) heterostructure composed of defective graphene oxide (GO) clipped on mesoporous polypyrrole (mPPy) as a dual‐functional Li‐ion redistributor to regulate the stepwise Li‐ion distribution and Li deposition for extremely stable, dendrite‐free Li anodes. Owing to the synergy between the Li‐ion transport nanochannels of mPPy and the Li‐ion nanosieves of defective GO, the 2D mPPy‐GO heterostructure achieves ultralong cycling stability (1000 cycles), even tests at 0 and 50 °C, and an ultralow overpotential of 70 mV at a high current density of 10.0 mA cm −2 , outperforming most reported Li anodes. Furthermore, mPPy‐GO‐Li/LiCoO 2 full batteries demonstrate remarkably enhanced performance with a capacity retention of >90 % after 450 cycles. Therefore, this work opens many opportunities for creating 2D heterostructures for high‐energy‐density Li metal batteries.
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