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在二维MXene纳米片上原位锚定超细ZnS纳米点以加速多硫化物氧化还原和调控锂电镀

In Situ Anchoring Ultrafine ZnS Nanodots on 2D MXene Nanosheets for Accelerating Polysulfide Redox and Regulating Li Plating.

作者信息

Wei Chuanliang, Xi Baojuan, Wang Peng, Liang Yazhan, Wang Zhengran, Tian Kangdong, Feng Jinkui, Xiong Shenglin

机构信息

School of Chemistry and Chemical Engineering, School of Materials Science and Engineering, Shandong University, Jinan, 250100, China.

School of Materials Science and Engineering, Shandong University, Jinan, 250100, China.

出版信息

Adv Mater. 2023 Aug;35(32):e2303780. doi: 10.1002/adma.202303780. Epub 2023 Jun 30.

Abstract

Lithium-sulfur (Li-S) battery is a promising energy storage system due to its cost effectiveness and high energy density. However, formation of Li dendrites from Li metal anode and shuttle effect of lithium polysulfides (LiPSs) from S cathode impede its practical application. Herein, ultrafine ZnS nanodots are uniformly grown on 2D MXene nanosheets by a low-temperature (60 °C) hydrothermal method for the first time. Distinctively, the ZnS nanodot-decorated MXene nanosheets (ZnS/MXene) can be easily filtered to be a flexible and freestanding film in several minutes. The ZnS/MXene film can be used as a current collector for Li-metal anode to promote uniform Li deposition due to the superior lithiophilicity of ZnS nanodots. ZnS/MXene powders obtained by freeze drying can be used as separator decorator to address the shuttle effect of LiPSs due to their excellent adsorbability. Theoretical calculation proves that the existence of ZnS nanodots on MXene can obviously improve the adsorption ability of ZnS/MXene with Li and LiPSs. Li-S full cells with composite Li-metal anode and modified separator exhibit remarkable rate and cycling performance. Other transition metal sulfides (CdS, CuS, etc.) can be also grown on 2D MXene nanosheets by the low-temperature hydrothermal strategy.

摘要

锂硫(Li-S)电池因其成本效益高和能量密度大而成为一种很有前景的储能系统。然而,锂金属阳极上锂枝晶的形成以及硫阴极上多硫化锂(LiPSs)的穿梭效应阻碍了其实际应用。在此,首次通过低温(60℃)水热法在二维MXene纳米片上均匀生长出超细ZnS纳米点。独特的是,ZnS纳米点修饰的MXene纳米片(ZnS/MXene)在几分钟内即可轻松过滤制成柔性独立薄膜。由于ZnS纳米点具有优异的亲锂性,ZnS/MXene薄膜可作为锂金属阳极的集流体,促进锂的均匀沉积。通过冷冻干燥获得的ZnS/MXene粉末因其出色的吸附性,可作为隔膜修饰剂来解决LiPSs的穿梭效应。理论计算证明,MXene上ZnS纳米点的存在可显著提高ZnS/MXene对锂和LiPSs的吸附能力。具有复合锂金属阳极和改性隔膜的锂硫全电池表现出卓越的倍率和循环性能。其他过渡金属硫化物(CdS、CuS等)也可通过低温水热策略生长在二维MXene纳米片上。

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