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Low-temperature plasma technology for electrocatalysis

论文摘要

Electrochemical reactions were widely used in energy storage and conversion devices. The development of low-cost, highly efficient and stable electrocatalyst is essential to a large-scale application of energy storage and conversion devices. Recently, emerging plasma technology has been employed as one of the practical ways to synthesize and modify electrocatalysts due to its unique property. In this review, we summarized the latest applications of plasma in energy storage and conversion, including using it as the preparation and modification technology of the various electrocatalysts and the usage of it as the synthesis technology directly. Firstly, we presented the definition and types of plasma reactors and their respective characteristics. Then, these applications of plasma technology in many essential electrode reactions including carbon dioxide reduction reaction(CO2RR), nitrogen fixation, oxygen reduction reaction(ORR), oxygen evolution reaction(OER) and hydrogen evolution reaction(HER) were introduced.Finally, the challenges and outlook of plasma technology in energy storage and conversion were summarized, and the solutions and prospected its development in the future were present. Through reviewing the related aspects, readers can have a deeper understanding of the application prospects of plasma in electrocatalysis.

论文目录

文章来源

类型: 期刊论文

作者: Dongdong Wang,Yuqin Zou,Li Tao,Yiqiong Zhang,Zhijuan Liu,Shiqian Du,Shuangquan Zang,Shuangyin Wang

来源: Chinese Chemical Letters 2019年04期

年度: 2019

分类: 工程科技Ⅰ辑

专业: 有机化工

单位: State Key Laboratory of Chem/Bio-Sensing and Chemometrics, Provincial Hunan Key Laboratory for Graphene Materials and Devices, College of Chemistry and Chemical Engineering, Hunan University,College of Chemistry and Molecular Engineering, Zhengzhou University

基金: supported by the National Natural Science Foundation of China (Nos. 51402100 and 21573066),the Provincial Natural Science Foundation of Hunan (Nos. 2016JJ1006 and 2016TP1009)

分类号: TQ426

页码: 826-838

总页数: 13

文件大小: 1785K

下载量: 21

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