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通过微纳尺度人工涂层的定制实现无枝晶锂金属沉积的最新进展

Recent Developments in Dendrite-Free Lithium-Metal Deposition through Tailoring of Micro- and Nanoscale Artificial Coatings.

作者信息

Meyerson Melissa L, Papa Philippe E, Heller Adam, Mullins C Buddie

出版信息

ACS Nano. 2021 Jan 26;15(1):29-46. doi: 10.1021/acsnano.0c05636. Epub 2020 Dec 21.

Abstract

Forty years after the failed introduction of rechargeable lithium-metal batteries and 30 years after the successful commercialization of the lower capacity, graphite-anode-based lithium-ion battery by Sony, demand for higher energy density batteries is leading to reinvestigation of the problem of dendrite growth that makes the metallic lithium anodes unsafe and prevented commercialization to begin with. One strategy to mitigate dendrite growth is to deposit thin, tailored, corrosion-passivating coatings on the metallic lithium, instead of allowing the metal to spontaneously react with the organic electrolyte solution to form its passivating solid electrolyte interface (SEI). The challenge is to find and to deposit a coating that is electronically insulating yet allows uniform permeation of Li at a high cycling rate, such that Li-metal is electrodeposited uniformly on the nanoscale below the tailored coating. Recently, a number of studies have examined multicomponent films, taking advantage of the properties of two different materials, which can be tuned separately or chosen for their complementary properties. Use of these multicomponent coatings will likely enable future researchers to create rationally designed SEIs capable of effectively suppressing the growth of Li dendrites. This review discusses recent developments in micro- and nanoscale tailored coatings to meet that need.

摘要

在可充电锂金属电池引入失败40年后,以及索尼成功商业化较低容量的石墨负极锂离子电池30年后,对更高能量密度电池的需求促使人们重新研究枝晶生长问题,正是枝晶生长使得金属锂负极不安全,从而一开始就阻碍了其商业化。减轻枝晶生长的一种策略是在金属锂上沉积薄的、定制的、耐腐蚀钝化涂层,而不是让金属与有机电解质溶液自发反应形成其钝化固体电解质界面(SEI)。挑战在于找到并沉积一种涂层,该涂层具有电子绝缘性,但能在高循环速率下允许锂均匀渗透,从而使锂金属在定制涂层下方的纳米尺度上均匀电沉积。最近,一些研究利用两种不同材料的特性研究了多组分薄膜,这两种材料的特性可以分别调整或因其互补特性而被选用。使用这些多组分涂层可能会使未来的研究人员能够创建出能够有效抑制锂枝晶生长的合理设计的SEI。本综述讨论了为满足这一需求而在微米和纳米尺度定制涂层方面的最新进展。

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