姓名 |
陈孔发 |
学科 |
材料科学与工程 |
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联系方式 |
电话: |
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E-mail:kongfa.chen@fzu.edu.cn |
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个人主页: https://www.researchgate.net/profile/Kongfa_Chen |
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个人简历 |
· 2000.09-2009.07: 哈尔滨工业大学,本、硕、博 · 2009.06-2010.10: 新加坡南洋理工大学,博士后 · 2010.12-2016.12: 澳大利亚科廷大学,博士后、科廷研究员 · 2016.12-至今:bet356官网手机app,副教授、教授、博导、院长助理、bet356官网手机app材料表界面研究所所长、可持续能源系主任 |
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社会兼职 |
· 中国能源研究会燃料电池专业委员会第二届委员 · 中国生产力促进中心协会氢能专业委员会SOEC工程中心顾问 · 福建省机械工程学会理事 · Applied Catalysis B: Environmental、Journal of Materials Chemistry A、Chemical Engineering Journal、Small等期刊审稿人 |
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荣誉称号 |
· 2021年,福建省“向上向善∙青马之光”领航工程之“向善育人工程基金”项目奖教金 · 2021年,2020年度bet356官网手机app青年五四奖章 · 2021年,bet356官网手机appbat365官网登录入口2021年“我心中的好老师”荣誉称号 |
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教学情况 |
本科生:《材料科学基础》、《金属学及热处理》、《专业英语与文献检索》 研究生:《英语阅读与写作》、《专业(工程)英语》、《材料研究进展》 |
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研究领域 |
固体氧化物燃料电池,高温电解水/二氧化碳 |
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论著成果 |
主持国家自然科学基金面上项目2项、福建省自然科学基金面上项目2项、企业横向项目2项。在Adv. Funct. Mater.、Appl. Catal. B-Environ.、Electrochem. Energy Rev.等国内外重要期刊发表SCI论文180余篇,总引用4200余次,H因子38;授权中国发明专利14件。入围2023年Elsevier全球前2%顶尖科学家“终身科学影响力”和“年度科学影响力”榜单。 代表性论文: 1. J. Huang, F. Liang, S. Zhao, L. Zhao, N. Ai, S.P. Jiang, X. Wang, H. Fang, Y. Luo, K. Chen*, Heterogeneous Catalyst Coating for Boosting the Activity and Chromium Tolerance of Cathodes for Solid Oxide Fuel Cells, Advanced Functional Materials, 2024, 2310402. 2. J. Qian, C. Lin, Z. Chen, J. Huang, N. Ai, S.P. Jiang, X. Zhou, X. Wang, Y. Shao, K. Chen*, High-performance, stable buffer-layer-free La0.9Sr0.1Ga0.8Mg0.2O3 electrolyte-supported solid oxide cell with a nanostructured nickel-based hydrogen electrode, Applied Catalysis B: Environmental, 2024, 346: 123742 3. J. Huang, Q. Liu, S.P. Jiang, L. Zhao, N. Ai, X. Wang, Y. Shao, C. Guan*, H. Fang, Y. Luo, K. Chen*, Promotional role of BaCO3 on the chromium–tolerance of La0.6Sr0.4Co0.2Fe0.8O3-δ cathodes of solid oxide fuel cells, Applied Catalysis B: Environmental, 2023, 321: 122080 4. Z. Chen, L. Jiang, S. He, C. Guan, Y, Zou, Z. Yue, N. Ai, S.P. Jiang*, Y, Shao, K. Chen*, Development of intertwined nanostructured multi-phase air electrodes for efficient and durable reversible solid oxide cells, Applied Catalysis B: Environmental, 2022, 305: 121056 5. K. Chen, S.P. Jiang*, Surface segregation in solid oxide cell oxygen electrodes: Phenomena, mitigation strategies and electrochemical properties, Electrochemical Energy Reviews, 2020, 3: 730-765 6. B. Wang, Z. Yue, Z. Chen, Y. Zhang, H. Fang, N. Ai, R. Wang, F. Yang, C. Guan*, S. P. Jiang*, Z. Shao, Y. Luo, K. Chen*, Facile construction of nanostructured cermet anodes with strong metal-oxide interaction for efficient and durable solid oxide fuel cells, Small, 2023, 19: 2304425 7. J. Huang, Z. Xie, N. Ai*, C.C. Wang, S.P. Jiang, X. Wang, Y. Shao, K. Chen*, A hybrid catalyst coating for a high-performance and chromium-resistive cathode of solid oxide fuel cells, Chemical Engineering Journal, 2022, 431: 134281 8. N. Ai, M. Chen, S. He, K. Chen*, T. Zhang*, S.P. Jiang*, High performance nanostructured bismuth oxide-cobaltite as a durable oxygen electrode of reversible solid oxide cells, Journal of Materials Chemistry A, 2018, 6: 6510-6520 9. N. Ai, N. Li, S. He, Y. Cheng, M. Saunders, K. Chen*, T. Zhang*, S.P. Jiang*, Highly active and stable Er0.4Bi1.6O3 decorated La0.76Sr0.19MnO3+δ nanostructured oxygen electrodes of reversible solid oxide cells, Journal of Materials Chemistry A, 2017, 5: 12149-12157. 2017 Journal of Materials Chemistry A HOT Papers 10. K. Chen, N. Li, N. Ai, M. Li, Y. Cheng, W. Rickard, J. Li, S.P. Jiang, Direct application of cobaltite-based perovskite cathodes on the yttria-stabilized zirconia electrolyte for intermediate temperature solid oxide fuel cells, Journal of Materials Chemistry A, 2016, 4: 17678-17685. |
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