陈佳义

职 称:

学 历: 博士研究生

电子邮件: Jiayi9236@fzu.edu.cn

研究方向: 1. 二氧化碳/一氧化碳电还原催化剂及器件设计研究 2. 电解水析氢催化反应

教育工作经历 (Education and working experiences)

2024-至今福州大学化学学院,硕导

2021-2024新加坡国立大学化学与生物分子工程系,博士后

2017-2020澳大利亚伍伦贡大学,博士研究生

2014-2017兰州大学物理科学与技术学院,理学硕士

2010-2014兰州大学物理科学与技术学院,理学学士

科研简介 (Scientific research)

近年来,已发表SCI论文十余篇,发表论文被引用1600多次(Google scholar统计),目前SCI上的h-index为16。其中,以第一作者(共同一作)在Nature Communications、Angewandte Chemie、Advanced Materials等国际顶级期刊上发表多篇电催化领域高水平论文,以合作作者身份在Nature Catalysis,The Proceedings of the National Academy of Sciences (PNAS),ACS Catalysis,ACS Nano等国际权威杂志发表论文多篇。

科研项目 (Scientific research projects)

“旗山学者“经费资助 (2024-2029);

获奖情况 (awards & honors)

入选2024年度“旗山学者”奖励支持计划;

代表性论文 (Representative papers)

[1]Chen J+,Wang D+,and Wang L* et al.,Tailoring copper-lead heterostructures for efficient CO electroreduction to EtOH,Chemical Engineering Journal,2025,520, 166368.

[2]Chen J,and Wang L* et al.,Modulating Oxygen Affinity to Enhance Liquid Products for Electrochemical Reduction of Carbon Monoxide,SmartMat, 2025, 6, e70010

[3]Chen J+, Aliasgar M+, Zamudio FB, et al., Diversity of platinum-sites at platinum/fullerene interface accelerates alkaline hydrogen evolution,Nature Communications, 2023, 14, 1711.

[4]Chen J, Wang L*, Effects of the catalyst dynamic changes and influence of the reaction environment on the performance of electrochemical CO2 reduction,Advanced Materials, 2022, 34, 2103900.

[5]Chen J+, Cui P+, Zhao G+, Sun W*, et al., Low‐coordinate iridium oxide confined on graphitic carbon nitride for highly efficient oxygen evolution,Angewandte Chemie International Edition, 2019, 58, 12540.

[6]Chen J, Zhao G, Chen Y, Sun W*, et al., Iron‐doped nickel molybdate with enhanced oxygen evolution kinetics,Chemistry–A European Journal, 2019, 25, 280.

[7]Chen J, Han S, Zhao H, Zhou J*, et al., Robust wire-based supercapacitors based on hierarchical α-MoO3 nanosheet arrays with well-aligned laminated structure,Chemical Engineering Journal, 2017, 320, 34.

[8]Zhou J+*,Chen J+, Han S, et al., Constructing optimized three-dimensional electrochemical interface in carbon nanofiber/carbon nanotube hierarchical composites for high-energy-density supercapacitors,Carbon, 2017, 111, 502.

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