Abstract
Although lithium metal anode has irreplaceable advantages, such as ultra-high specific energy density and ultra-low redox potential, a variety of issues, i.e., short cycle life, low Coulomb efficiency, and tendency to cause fire explosions caused by lithium dendrite growth and high reactivity to the electrolyte, seriously hinder the practical progress of lithium metal anode. This perspective summarizes how 3D lithiophilic materials have stabilized lithium metal anodes in recent years by improving the uneven deposition of lithium metal, alleviating the volume expansion of lithium metal anodes, and limiting dendrite growth. Simultaneously, the issues of the 3D composite lithium anodes in practical application are concluded and the research direction of 3D composite lithium anode is prospected.
Funder
National Natural Science Foundation of China
Natural Science Foundation of Chongqing Science & Technology Commission
Subject
Electrical and Electronic Engineering,Electrochemistry,Energy Engineering and Power Technology
Reference110 articles.
1. Toward Safe Lithium Metal Anode in Rechargeable Batteries;Cheng;Chem. Rev.,2017
2. Lithium Metal Anodes with Nonaqueous Electrolytes;Zhang;Chem. Rev.,2020
3. One dimensional nanostructures contribute better Li–S and Li–Se batteries: Progress, challenges and perspectives;Gu;Energy Stor. Mater.,2019
4. Applications of transition-metal sulfides in the cathodes of lithium–sulfur batteries;Zuo;Tungsten,2020
5. Ali, A., Liang, F., Zhu, J., and Shen, P.K. (Nano Mater. Sci., 2022). The role of graphene in rechargeable lithium batteries: Synthesis, functionalisation and perspectives, Nano Mater. Sci., in press.
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