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用于稳定锂金属负极的基于聚合物两性离子的人工界面层

Polymer Zwitterion-Based Artificial Interphase Layers for Stable Lithium Metal Anodes.

作者信息

Jin Tong, Liu Ming, Su Kai, Lu Yue, Cheng Guang, Liu Yao, Li Nian Wu, Yu Le

机构信息

State Key Lab of Organic-Inorganic Composites, Beijing University of Chemical Technology, Beijing 100029, P. R. China.

Beijing Advanced Innovation Center for Soft Matter Science and Engineering, State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, Beijing 100029, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2021 Dec 8;13(48):57489-57496. doi: 10.1021/acsami.1c19479. Epub 2021 Nov 29.

Abstract

Lithium (Li) metal batteries are promising future rechargeable batteries with high-energy density as the Li metal anode (LMA) possesses a high specific capacity and the lowest potential. However, the commercial application of the LMA has been hindered by a low Coulombic efficiency and dendrite growth, which are related to the unstable interphase with poor Li ion transport. Herein, we report novel polymer zwitterion-based artificial interphase layers (AILs) with improved Li ion transport and high stability for long-life LMAs. Benefitting from the unique zwitterion effect within the polymer zwitterion-based AILs, a high Li ion transference number (0.81) and a good ionic conductivity (0.75 × 10 S cm) can be realized simultaneously at the interface. By regulating the weight ratio of the sulfonate group and the phosphate group in polymer zwitterion-based AILs, the modified LMA enables long-term Li plating/stripping for 1400 h at 1 mA cm and stable cycling in a full cell. This interfacial engineering concept could shed light on the development of safe LMAs.

摘要

锂(Li)金属电池是未来很有前景的可充电电池,具有高能量密度,因为锂金属阳极(LMA)具有高比容量和最低电位。然而,LMA的商业应用受到低库仑效率和枝晶生长的阻碍,这与具有不良锂离子传输的不稳定界面相有关。在此,我们报道了基于新型聚合物两性离子的人工界面层(AILs),具有改善的锂离子传输性能和高稳定性,适用于长寿命LMA。受益于基于聚合物两性离子的AILs内独特的两性离子效应,在界面处可同时实现高锂离子迁移数(0.81)和良好的离子电导率(0.75×10 S cm)。通过调节基于聚合物两性离子的AILs中磺酸根基团和磷酸根基团的重量比,改性后的LMA能够在1 mA cm下进行1400小时的长期锂电镀/剥离,并在全电池中实现稳定循环。这种界面工程概念可为安全LMA的开发提供思路。

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