陈孔发

发布者:
发布时间:
2019-03-22
浏览量:

姓名

孔发

学科

材料科学与工程


  联系方式

E-mailkongfa.chen@fzu.edu.cn

个人主页:

https://www.researchgate.net/profile/Kongfa_Chen

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:广西快乐双彩,副教授、教授(校聘)、博导、院长助理、广西快乐双彩材料表界面研究所所长、材料学院表界面研究所执行所长

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: EnvironmentalJournal of Materials Chemistry AChemical Engineering JournalACS Applied Materials & Interfaces期刊审稿人

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年度广西快乐双彩青年五四奖章

· 2021年,广西快乐双彩材料学院2021我心中的好老师荣誉称号

教学情况

本科生:《材料科学基础》、《金属学及热处理》、《专业英语和文献检索》

研究生:《英语阅读与写作》、《专业(工程)英语》、《材料研究进展

研究领域

固体氧化物电池,高温电解水/二氧化碳

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2Electrochem. Energy Rev.Appl. Catal. B-Environ.J. Mater. Chem. AChem. Eng. J.等国内外重要期刊发表第一/通讯作者SCI论文70引用4000H因子36

表性论文:

1. 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 chromiumtolerance of La0.6Sr0.4Co0.2Fe0.8O3-δ cathodes of solid oxide fuel cells, Applied Catalysis B: Environmental, 2023, 321: 122080

2. 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

3. 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

4. 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

5. Z. Chen, L. Jiang, Z. Yue, D. Dong, N. Ai, S.P. Jiang, D. Zhao, X. Wang, Y. Shao, K. Chen*, A facile approach for improving the interfacial adhesion of nanofiber air electrodes of reversible solid oxide cells, ACS Applied Materials & Interfaces, 2023, 15: 8120–8127

6. Z. Yue, L. Jiang, Z. Chen, N. Ai, Y. Zou, S.P. Jiang, C. Guan, X. Wang, Y. Shao, H. Fang, Y. Luo, K. Chen*, An ultrafine dual–phase, cation–deficient PrBa0.8Ca0.2Co2O5+δ air electrode for efficient solid oxide cells, ACS Applied Materials & Interfaces, 2023, 15: 8138–8148

7. X. Lin, J. Xu, Z. Chen, N. Ai, Z. , S. P. Jiang, D. Zhao, X. Wang, Y. Shao, K. Chen*, Thermally driven long-distance elemental diffusion enhances the sinterability of anode and electrolyte of metal-supported solid oxide fuel cells, Journal of Power Sources, 2023, 555: 232401

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.