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Reduced-Graphene-Oxide-Guided Directional Growth of Planar Lithium Layers

  • Nan Li
  • , Kun Zhang
  • , Keyu Xie
  • , Wenfei Wei
  • , Yong Gao
  • , Maohui Bai
  • , Yuliang Gao
  • , Qian Hou
  • , Chao Shen
  • , Zhenhai Xia
  • , Bingqing Wei
  • Northwestern Polytechnical University Xian
  • University of North Texas
  • University of Delaware

科研成果: 期刊稿件文章同行评审

127 引用 (Scopus)

摘要

Rechargeable lithium (Li) metal batteries hold great promise for revolutionizing current energy-storage technologies. However, the uncontrollable growth of lithium dendrites impedes the service of Li anodes in high energy and safety batteries. There are numerous studies on Li anodes, yet little attention has been paid to the intrinsic electrocrystallization characteristics of Li metal and their underlying mechanisms. Herein, a guided growth of planar Li layers, instead of random Li dendrites, is achieved on self-assembled reduced graphene oxide (rGO). In situ optical observation is performed to monitor the morphology evolution of such a planar Li layer. Moreover, the underlying mechanism during electrodeposition/stripping is revealed using ab initio molecular dynamics simulations. The combined experiment and simulation results show that when Li atoms are deposited on rGO, each layer of Li atoms grows along (110) crystallographic plane of the Li crystals because of the fine in-plane lattice matching between Li and the rGO substrate, resulting in planar Li deposition. With this specific topographic characteristic, a highly flexible lithium–sulfur (Li–S) full cell with rGO-guided planar Li layers as the anode exhibits stable cycling performance and high specific energy and power densities. This work enriches the fundamental understanding of Li electrocrystallization without dendrites and provides guidance for practical applications.

源语言英语
期刊论文编号1907079
期刊Advanced Materials
32
7
DOI
出版状态已出版 - 1 2月 2020

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