Hierarchical Porous and Three-Dimensional MXene/SiO<sub>2</sub> Hybrid Aerogel through a Sol-Gel Approach for Lithium–Sulfur Batteries

A unique porous material, namely, MXene/SiO<sub>2</sub> hybrid aerogel, with a high surface area, was prepared via sol-gel and freeze-drying methods. The hierarchical porous hybrid aerogel possesses a three-dimensional integrated network structure of SiO<sub>2</sub> cross-lin...

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Bibliographic Details
Main Authors: Jianping Zhou, Ziyuan Pei, Zhuyin Sui, Ying Liang, Xiufeng Xu, Yongpeng Li, Yulin Li, Jingyi Qiu, Qi Chen
Format: Article
Language:English
Published: MDPI AG 2022-10-01
Series:Molecules
Subjects:
Online Access:https://www.mdpi.com/1420-3049/27/20/7073
Description
Summary:A unique porous material, namely, MXene/SiO<sub>2</sub> hybrid aerogel, with a high surface area, was prepared via sol-gel and freeze-drying methods. The hierarchical porous hybrid aerogel possesses a three-dimensional integrated network structure of SiO<sub>2</sub> cross-link with two-dimensional MXene; it is used not only as a scaffold to prepare sulfur-based cathode material, but also as an efficient functional separator to block the polysulfides shuttle. MXene/SiO<sub>2</sub> hybrid aerogel as sulfur carrier exhibits good electrochemical performance, such as high discharge capacities (1007 mAh g<sup>–1</sup> at 0.1 C) and stable cycling performance (823 mA h g<sup>–1</sup> over 200 cycles at 0.5 C). Furthermore, the battery assembled with hybrid aerogel-modified separator remains at 623 mA h g<sup>–1</sup> over 200 cycles at 0.5 C based on the conductive porous framework and abundant functional groups in hybrid aerogel. This work might provide further impetus to explore other applications of MXene-based composite aerogel.
ISSN:1420-3049