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Published in: Rare Metals 5/2023

03-02-2023 | Original Article

Reasonable suppression of polysulfides/polyselenides shuttle based on MXene in Na-SeS2 batteries

Authors: Qiu-Ju Yang, Jing Zhao, Wei Gao, Wei Zhong, Yu-Ruo Qi, Jin Han, Shu-Juan Bao, Mao-Wen Xu

Published in: Rare Metals | Issue 5/2023

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Abstract

Metal-sulfur/selenium batteries have become the focus of new-generation energy storage systems due to the advantages of low-cost and high energy density. However, it still suffers from the notorious shuttle of polysulfides/polyselenides, poor electronic conductivity and tremendous volume expansion. Herein, a dual defense system for polysulfides/polyselenides was proposed and constructed based on MXene. The nitrogen-doped porous carbon (NPC) decorated by Ti3C2Tx MXene (M@NPC) was employed as the SeS2 host (SeS2@M@NPC). Particularly, Ti3C2Tx sheets wrapped on NPC guarantee the rapid ion diffusion and serve as the first barrier for SeS2 and dissolved sodium polysulfides/polyselenides. Meanwhile, the few-layered Ti3C2Tx sheets coated on glass fiber separators act as the second barrier for alleviating the shuttle of polysulfides/polyselenides through physical interception and chemical adsorption. With this elaborate design, the integrated Na-SeS2 battery achieves a high specific capacity of 1243 mAh·g−1 at 1.0C, revealing a distinct superiority over its counterparts (SeS2@M@NPC, 1083 mAh·g−1 at 0.5C; and SeS2@NPC, 823 mAh·g−1 at 0.5C). The findings gained in this work provide a creative idea for the construction of durable room-temperature Na-SeS2 batteries based on MXenes and their derivative materials.

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Appendix
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Metadata
Title
Reasonable suppression of polysulfides/polyselenides shuttle based on MXene in Na-SeS2 batteries
Authors
Qiu-Ju Yang
Jing Zhao
Wei Gao
Wei Zhong
Yu-Ruo Qi
Jin Han
Shu-Juan Bao
Mao-Wen Xu
Publication date
03-02-2023
Publisher
Nonferrous Metals Society of China
Published in
Rare Metals / Issue 5/2023
Print ISSN: 1001-0521
Electronic ISSN: 1867-7185
DOI
https://doi.org/10.1007/s12598-022-02197-6

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