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Chemical cross-linking and mechanically reinforced carbon network constructed by graphene boosts potassium ion storage 被引量:1

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摘要 Carbon-based electrodes of potassium-ion batteries are of great research interest ascribed to their low cost and environmentally friendly distinctions.However,traditional carbon materials usually exhibit weak mechanical properties and incomplete crosslinking,resulting in poor stability and electrochemical performance.Herein,we report a new strategy for modifying reduced graphene oxide into a uniform few-layer structure through a sol–gel method combined with acid etching treatment.The obtained chemical cross-linking and mechanically reinforced carbon network constructed by graphene(CNCG)demonstrates excellent electrochemical and mechanical properties.Adopted as a free-standing anode(~7 mg·cm^(−2))for potassium ion battery,the asachieved CNCG delivers a high reversible specific capacity of 317.7 mAh·g^(−1) at a current density of 50 mA·g^(−1) and admirable cycle stability(208.4 mAh·g^(−1) at 50 mA·g^(−1) after 500 cycles).The highly reversible structural stability and fully cross-linked properties during potassiation are revealed by ex-situ characterization.This work provides new ideas for the synthesis of new carbon materials and the development of high-performance electrodes.
出处 《Nano Research》 SCIE EI CSCD 2022年第10期9019-9025,共7页 纳米研究(英文版)
基金 supported by the National Natural Science Foundation of China(No.51904216).
作者简介 Chenxu Wang contributed equally to this work;Ruohan Yu contributed equally to this work;Address correspondence to:Wen Luo,luowen_1991@whut.edu.cn。
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  • 1陈海生,李泓,徐玉杰,徐德厚,王亮,周学志,陈满,胡东旭,林海波,李先锋,胡勇胜,安仲勋,刘语,肖立业,蒋凯,钟国彬,王青松,李臻,康飞宇,王选朋,尹钊,戴兴建,林曦鹏,朱轶林,张弛,张宇鑫,刘为,岳芬,张长昆,俞振华,党荣彬,邱清泉,陈仕卿,史卓群,张华良,李浩秒,徐成,周栋,司知蠢,宋振,赵新宇,刘轩,梅文昕.2024年中国储能技术研究进展[J].储能科学与技术,2025,14(6):2149-2192. 被引量:2

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