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碳基柔性电极用于电化学钾储存器件

吴禹翰 吴效楠 关银燕 徐杨 史发年 梁吉艳

新型炭材料2022,Vol.37Issue(5):852-874,23.
新型炭材料2022,Vol.37Issue(5):852-874,23.DOI:10.1016/S1872-5805(22)60631-0

碳基柔性电极用于电化学钾储存器件

Carbon-based flexible electrodes for electrochemical potassium storage

吴禹翰 1吴效楠 2关银燕 1徐杨 3史发年 1梁吉艳1

作者信息

  • 1. 沈阳工业大学 环境与化学工程学院,辽宁 沈阳 110870
  • 2. 河北石油职业技术大学 化工系,河北 承德 067000
  • 3. Department of Chemistry, University College London, London WC1H 0AJ, UK
  • 折叠

摘要

Abstract

With the rapid growth of the flexible and wearable electronics market, there have been big advances in flexible electro-chemical energy storage technologies. Developing flexible electrodes with a low cost, superior safety, and high performance remains a great challenge. In recent years, potassium-based electrochemical energy storage devices have received much attention by virtue of their cost competitiveness and the availability of potassium resources. Carbon materials have been widely used as electrode materials or substrates for flexible energy storage devices due to their excellent properties, such as low weight, non-toxicity and abundance. Here, we summarize the recent advances in carbon materials (e.g. carbon nanofibers, carbon nanotubes, and graphene) for use in flex-ible electrochemical potassium storage devices, including potassium-ion batteries, potassium-ion hybrid capacitors, and K-S/Se bat-teries. Strategies for the synthesis of carbon-based flexible electrodes and their reported electrochemical performance are outlined. Fi-nally, the challenges of future developments in this field are discussed.

关键词

炭材料/柔性/钾离子电池/钾离子混合电容/钾-硫/硒电池

Key words

Carbon materials/Flexible/Potassium-ion batteries/Potassium-ion hybrid capacitors/K-S/Se batteries

分类

化学化工

引用本文复制引用

吴禹翰,吴效楠,关银燕,徐杨,史发年,梁吉艳..碳基柔性电极用于电化学钾储存器件[J].新型炭材料,2022,37(5):852-874,23.

基金项目

辽宁省重点研发计划(2020JH2/10300079) (2020JH2/10300079)

辽宁省百千万人才计划(2018921006) (2018921006)

兴辽英才计划(XLYC1908034) (XLYC1908034)

英国工程和自然科学研究委员会研究项目(EP/V000152/1,EP/X000087/1) (EP/V000152/1,EP/X000087/1)

利华休姆信托委员会研究项目(RPG-2021-138) (RPG-2021-138)

英国皇家学会研究项目(RGS\R2\212324,SIF\R2\212002).The authors acknowledge the support by the Key R&D project of Liaoning Province of China(2020JH2/10300079),the"Liaoning BaiQianWan Talents Program"(2018921006),the Liaoning Re-vitalization Talents Program(XLYC1908034),the Engineering and Physical Sciences Research Council(EP/V000152/1,EP/X000087/1),the Leverhulme Trust(RPG-2021-138),and the Royal Society(RGS/R2/212324,SIF/R2/212002),and Shenyang University of Technology.For the purpose of open ac-cess,the author has applied a Creative Commons At-tribution(CC BY)licence to any Author Accepted Manuscript version arising.The authors thank Dr.&nbsp (RGS\R2\212324,SIF\R2\212002)

Chenglin Zhang(Jiangsu University)for his helpful discussions. (Jiangsu University)

新型炭材料

OA北大核心CSCDCSTPCDSCI

1007-8827

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