刘建国
时间: 2026-03-17 来源:

姓名:刘建国
职称:教授、博士生导师
院系:能源电力创新研究院
研究方向:
氢能与燃料电池的关键材料和技术研究。主要包括电解制氢及燃料电池新型电催化剂设计与制备、高性能膜电极设计与制备、电解制氢及燃料电池电堆和系统集成、长期寿命衰减机理、高性能新型化学电源等,同时也开展氢能与低碳发展战略和规划研究。
欢迎报考硕士和博士研究生(在能源电力创新研究院招生)以及博士后。同时课题组正在组建电解制氢与燃料电池研究团队,欢迎感兴趣的海内外高层次人才直接联系。
联系方式:
邮箱:jianguoliu@ncepu.edu.cn
个人简介及主要荣誉称号:
刘建国,男,1975年10月生,黑龙江人,华北电力大学二级教授、博士生导师。1997年本科毕业于大连理工大学,获工学学士学位;2004年于中国科学院大连化学物理研究所获工学博士学位。2004年3月至6月任中科院大连化学物理研究所助理研究员;2004年6月至2005年8月赴香港科技大学机械工程系担任访问学者;2005年8月至2007年3月在英国纽卡斯尔大学化学工程系从事博士后研究;2007年3月起任教于南京大学,历任材料科学与工程系副教授、现代工程与应用科学学院教授、博士生导师;2021年7月至今,任华北电力大学二级教授、博士生导师,新型储能技术北京实验室常务副主任,北京市高效电解制氢和燃料电池重点实验室主任。筹建了全国第一个具有CMA资质的燃料电池检测实验室,以及全国第一个氢能科学与工程的本科专业,并担任华北电力大学氢能科学与工程教研室主任。国家自然科学二等奖获得者,入选国家级高层次人才计划,科技部创新人才推进计划中青年科技创新领军人才,中国工程院战略咨询中心氢能特聘专家,中国内燃机学会燃料电池动力分会副主任委员,河北省燃料电池标委会主任委员。
长期从事氢能与燃料电池方面的研究,发表SCI论文200余篇,引用超过9000次,H因子为52,承担了国家重点专项项目/课题/子课题、国家自然科学基金重点项目/面上项目、江苏省杰青基金等国家地方和企业委托项目30余项。作为中国工程院战略咨询中心氢能特聘专家,完成了山东、广东、江苏等地区的氢能规划和战略研究。担任PNSMI(SCI期刊)和《电化学》杂志编委,出版了《可再生能源导论》、《先进材料合成与制备技术》和《燃料电池关键材料与技术》等教材和专著。
主要科研项目情况:
[1]国家自然科学基金重点项目:面向富氧空气的燃料电池系统多尺度设计及性能优化;2026.01—2030.12 ,项目负责人
[2]国家科技部重点研发计划:光伏/风电等波动性电源电解制氢材料和过程基础 ,2021.12—2025.11,项目负责人
[3]国家科技部重点研发计划子课题:大功率燃料电池电堆技术研究与开发应用,2017.07—2021.06,项目负责人
[4]国家重大科研仪器研制项目:大功率氢燃料电池电堆综合测试仪的研制,2017.01—2021.12,项目骨干
[5]国家科技部重点研发计划课题:高性能纳米核壳结构合金催化剂开发,2016.07—2021.06,项目负责人
[6]国家自然科学基金委员会面上项目:天然酚类抗氧化剂在车载燃料电池质子交换膜中的应用及其机理研究,2017.01—2020.12,项目负责人
[7]装备预研教育部联合基金:高比能量金属双极板空冷燃料电池电堆研制,2019.01—2020.12,项目负责人
[8]中国工程院院地合作项目重大项目:江苏省氢能产业发展路径研究, 2019.10-2020.12 ,项目负责人
[9]中国工程院院地合作项目重大项目:广东省氢能发展战略研究, 2018.11—2019.12 ,项目负责人
[10]国家自然科学基金委员会面上项目:基于掺氮石墨烯的高性能 Fe-N-C 非铂燃料电池催化剂的制备与表征,2015.01—2018.12,项目负责人
[11]国家自然科学基金委员会国际(地区)合作与交流项目:低铂和非铂催化剂在质子交换膜燃料电池的应用研究,2017.01—2017.12,项目负责人
[12]国家自然科学基金委员会面上项目,负责人,间歇微波法制备过渡金属氧化物-石墨烯复合材料用于燃料电池催化剂载体的性能与稳定性研究,2012.01—2015.12,项目负责人
主要获奖情况:
[1]2020 年获得国家级高层次人才
[2] 2018年获得科技部中青年科技创新领军人才
[3] 2016年江苏省杰青基金获得者
[4] 2018年获得江苏省333工程第二层次人才
[5] 2015年获得江苏省青蓝工程中青年学术带头人
[6] 2015年获得 江苏省六大人才高峰高层次人才B类
[7] 2013年获得度国家自然科学二等奖(排名第四)
代表性论著:
[1]Chuanjie Wang, Jia Li*, Xiaoke Li, Lei Zhang, Siao Zhang, Qinan Yin, Qinghao Zhang, Yongquan Wu, Kaifu Luo, Dengzhou Liu, Aidong Tan, Jianguo Liu, Temperature-Dependent Performance Trade-Offs in PEMFCs: A Mechanistic Study and Oxygen-Enriched Compensation Strategy, eTransportation, 2026, 27, 100527.
[2]Deren Yang*, Chunyang Zhang, Yufeng Qin, Yang Yue, Yubo Liu, Xiaoyun Shi, Kang Hua, Xuemin An, Louyu Jin, Yipeng Zhang, Shouwei Zuo*, Aidong Tan*, Jianguo Liu*, Single-faceted IrO2 monolayer enabling high-performing proton exchange membrane water electrolysis beyond 10,000 h stability at 1.5 A cm-2. Nature Communications, 2025, 16, 7236.
[3]Aidong Tan*, Jiayi Song, Xutao Qiu, Zhang Liu, Lifan Xia, Chen Ju, Feng Zhao, Gang Li, Xiaoyun Shi, Tingting Li, Ping Liu, Jianguo Liu*, Catastrophic localized deflagration formation mechanisms and safety precautions in proton exchange membrane water electrolyzer, Nature Communications, 2025, 16, 9115 .
[4]Siao Zhang, Jia Li*, Chuanjie Wang, Xiaoke Li, Qinan Yin, Qinghao Zhang, Kaifu Luo, Yongquan Wu, Tianrang Yang, Jianguo Liu*, Ionomer distribution control via thiophene S-modification of carbon support for high-power proton exchange membrane fuel cells, Nature Communications, 2025, 16, 11670.
[5]Wen Kuang, Zhixiang Cui, Cheng Wang, Tao Chen, Qingjun Wang, Senlin Li, Tianrang Yang*, Jianguo Liu*, Self-Supported Ni/Ni(OH)2 Electrodes for High-Performance Alkaline and AEM Water Electrolysis, Advanced Energy Materials, 2025, 15, 2406080.
[6]Runcheng Zhang, Zhuolin Yuan, Xutao Qiu, Zhiyan Rui, Xiaoyun Shi, Jia Li, Aidong Tan*, Jianguo Liu*, Multifunctional Pt-CeO2-CNT composite membranes for high-performance PEM water electrolysis with reduced H2 permeation and enhanced chemical durability, Journal of Materials Chemistry A, 2025, 13, 32416-32426.
[7]Chuanjie Wang,Jia Li*, Siao Zhang, Xiaoke Li, Xiao Duan, Yongquan Wu, Qinghao Zhang, Tianrang Yang, Jianguo Liu*, High-precision identification of polarization processes of proton exchange membrane fuel cells through relaxation time analysis: Targeted experimental design and verification, Applied Energy, 2024, 367, 123377.
[8]Xiaoke Li, Xiao Duan, Siao Zhang, Chuanjie Wang, Kang Hua, Zejin Wang, Yongkang Wu, Jia Li*, Jianguo Liu*, Strategies for Achieving Ultra-long ORR Durability-Rh Activates Interatomic Interactions in Alloys, Angewandte Chemie International Edition, 2024, 63, e202400549.
[9]Zhiyan Rui, Kang Hua, Zhenlan Dou, Aidong Tan, Chunyan Zhang, Xiaoyun Shi, Rui Ding, Xiaoke Li, Xiao Duan, Yongkang Wu, Yipeng Zhang, Xuebin Wang, Jia Li*, Jianguo Liu*, A new insight into the chemical degradation of proton exchange membrane in water electrolyzer, Journal of Materials Chemistry A, 2024, 12 (16), 9563-9573.
[10]Kang Hua, Xiaoke Li, Zhiyan Rui, Xiao Duan, Yongkang Wu, Deren Yang*, Jia Li*, Jianguo Liu*, Integrating Atomically Dispersed Ir Sites in MnCo2O4.5 for Highly Stable Acidic Oxygen Evolution Reaction, ACS Catalysis, 2024, 14, 3712-3724.
[11]Xiaoke Li, Xiao Duan, Kang Hua, Yongkang Wu, Zhiyan Rui, Rui Ding, Aidong Li, Chen Ouyang, Jia Li*, Ting Li*, Jianguo Liu*, Local Tetragonal Distortion of Pt Alloy Catalysts for Enhanced Oxygen Reduction Reaction Efficiency, Carbon Energy, 2024, 6, e508.
[12]Aidong Tan, Feng Zhao,Yipeng Zhang, Gang Li, Chu Wu, Zhang Liu, Jia Li, Jianguo Liu, Innovative application of transfer learning on small-scale datasets: Analysis and optimization of catalyst ink for the low-iridium membrane electrode assemblies of proton exchange membrane water electrolysis, Chemical Engineering Science, 2024, 302, 120814.
[13]Aidong Tan, Yipeng Zhang, Xiaoyun Shi, Chen Ju, Ping Liu, Tianrang Yang, Jianguo Liu, The poisoning effects of Ti-ion from porous transport layers on the membrane electrode assembly of proton exchange membrane water electrolyzers, Chemical Engineering Journal, 2023, 471, 144624.
[14]Zhiyan Rui, Rui Ding, Kang Hua, Xiao Duan, Xiaoke Li, Yongkang Wu, Xuebin Wang, Chen Ouyang, Jia Li*, Ting Li*, Jianguo Liu*, Design of proton exchange membranes with high durability for fuel cells: From the perspective of machine learning, Journal of Membrane Science, 2023, 683, 121831.
[15]Yongkang Wu, Xiaoke Li, Kang Hua, Xiao Duan, Rui Ding, Zhiyan Rui, Feng Cao, Mengchen Yuan, Jia Li*, Jianguo Liu*, Generalized Encapsulations of ZIF-Based Fe–N–C Catalysts with Controllable Nitrogen-Doped Carbon for Significantly-Improved Stability Toward Oxygen Reduction Reaction, Small, 2023, 19, 2207671.
[16]Yongkang Wu, Mengchen Yuan, Xiaoke Li, Rui Ding, Xiao Duan, Jia Li*, Ying Wang*, Xiaolin Li, Yunbo Zhang, and Jianguo Liu*, Assistance of rearrangement of active sites in Fe/N/C catalyst for harvesting ultra-high power density PEMFCs, Applied Catalysis B: Environmental, 2022, 312, 121365.
[17]Xiao Duan, Feng Cao, Rui Ding, Xiaoke Li, Qingbing Li, Ruziguli Aisha, Shiqiao Zhang, Kang Hua, Zhiyan Rui, Yongkang Wu, Jia Li*, Aidong Li, Jianguo Liu*, Cobalt-doping stabilized active and durable sub-2 nm Pt nanoclusters for low-Pt-loading PEMFC cathode, Advanced Energy Materials, 2022, 12 (13), 2103144.
[18]Yawen Chen, Rui Ding, Jia Li*, Jianguo Liu*, Highly active atomically dispersed platinum-based electrocatalyst for hydrogen evolution reaction achieved by defect anchoring strategy, Applied Catalysis B: Environmental, 2022, 301, 120830.
[19]Rui Ding, Ran Wang, Yiqin Ding, Wenjuan Yin, Yide Liu, Jia Li*, Jianguo Liu*, Designing AI-aided analysis and prediction models for nonprecious metal electrocatalyst-based proton exchange membrane fuel cells, Angewandte Chemie International Edition, 2020, 59 (43), 19175-19183.

