唐浩林,首席教授、博士生导师,国家级高层次人才
基本情况
性别:男 出生年月:1981年2月
学位:博士 职称:学科首席教授、博士生导师
政治面貌:中共党员 民族:汉
工作单位:武汉理工大学材料复合新技术国家重点实验室
联系方式: thln@whut.edu.cn
个人简介
唐浩林,武汉理工大学材料学科首席教授、博士生导师,国家级高层次人才,主要从事燃料电池质子交换膜关键材料、氢-富氢物质相互转换技术的研究工作。2000年以来围绕氢能燃料电池技术主持863课题、共用技术项目、国家自然科学基金、重大横向等项目40余项;在Advanced Materials等国际著名期刊上发表SCI论文300余篇、他引15,000余次、H因子60,受邀撰写英文专著章节4篇,申请、获得国家发明专利86件、获中国专利奖2次(2020年、2023年),开发的燃料电池、水电解制氢复合质子交换膜,储能电池隔膜均已投入产业应用。先后获得教育部“新世纪优秀人才计划” (2012年)、湖北省“杰出青年基金”(2014年)、第十四届“霍英东青年教师奖”(2015年),“高安全性锂电隔膜”湖北省创新战略团队 (带头人,2016年)、科技部“中青年科技创新领军人才”(2017年)、湖北省“产业教授”(2019)称号及荣誉;入选英国皇家化学会会士(FRSC)、能源领域全球前2%顶尖科学家、Elsevier中国高被引学者(材料科学与工程领域)。
教育及工作经历
1997.09-2001.06 武汉理工大学材料学院,获学士学位
2001.09-2007.06 武汉理工大学材料学院,获工学硕士、博士学位
2007.07-2008.02 武汉理工大学材料复合新技术国家重点实验室,助理研究员
2007.12-2008.12 新加坡南洋理工大学,博士后(Research Fellow)
2008.06-2008.12 兼任新加坡国防科技局(DSTA) Research Scientist Associate
2008.03-2011.09 武汉理工大学材料复合新技术国家重点实验室,副教授
2011.09- 破格晋升为教授
2020.01- 晋升为二级教授、学科首席教授
近期主持科研项目
1.重型车辆氨氢融合碳动力系统基础研究,国家自然科学基金重大项目课题(T2241003),2023.01-2027.12,250万元
2.高性能、低成本、长寿命氢能动力系统关键材料,湖北省重点研发计划(2021AAA006),2021.1-2024.06,100万元
3.质子交换膜及其关键原料联合开发协议,国家电投集团氢能科技发展有限公司,2021.1-2023.3,450万元
4.燃料电池复合质子交换膜中试产线前期工艺开发、验证及性能测试,国家电投集团氢能科技发展有限公司2019.09-2021.06,380万元
5.燃料电池非贵金属催化电极的气体扩散动力学机制研究,国家自然科学基金,2020.01-2023.12,75.6万元
近期代表性学术成果
1. Chen, Y. X.; Meng, Z. H.; Liu, F.; Zhang, A. J.; Wang, X. C.; Xiong, Y. F.; Tang, H. B.; Tian, T.; Tang, H. L., Thermostable Tellurium Anchoring Enabling Robust Thermal and Electrochemical Stability for Pt3Co Intermetallic Fuel Cell Catalysts. ADVANCED FUNCTIONAL MATERIALS 2024, 34 (48).
2. Zhu, K.; Zhang, H.; Zhu, L. Y.; Tian, T.; Tang, H. B.; Lu, X. C.; He, B.; Wu, F. L.; Tang, H. L., Porous Transport Layers with Laser Micropatterning for Enhanced Mass Transport in PEM Water Electrolyzers. NANO LETTERS 2024, 24 (34), 10656-10663.
3. Zhai, M. Y.; Meng, Z. H.; Chen, R.; Song, J. P.; Zhang, A. J.; Zhao, S. Q.; Tian, T.; Zhu, L. Y.; Zhang, H.; Tang, H. L., Evolution of the network structure and voltage loss of anode electrode with the polymeric dispersion in PEM water electrolyzer. JOURNAL OF COLLOID AND INTERFACE SCIENCE 2024, 673, 934-942.
4. Liao, Y. C.; Zhao, S. Q.; Liu, G. L.; Li, H.; Shuai, J. Q.; Wang, L. T.; Liu, B. X.; Tang, H. L., Proton exchange membranes with functionalized sulfonimide and phosphonic acid groups for next-generation fuel cells operating at 120 oC. CHEMICAL ENGINEERING JOURNAL 2024, 488.
5. Zhao, S. Q.; Liao, Y. C.; Wang, R.; Li, Y.; Shuai, J. Q.; Wang, L. T.; Liu, B. X.; Chen, R.; Tian, T.; Zhang, H. N.; Tang, H. L., Phosphate-grafted polyethyleneimine-induced multifunctional cerium oxide as an antioxidant for simultaneously enhancing the proton conductivity and durability of proton exchange membranes. ADVANCED COMPOSITES AND HYBRID MATERIALS 2024, 7 (2).
6. Shuai, J. Q.; Zhao, S. Q.; Liao, Y. C.; Wu, F. L.; Wang, R.; Wang, L. T.; Shen, C. H.; Tang, H. L., Rationally designing anti-poisoning polymer electrolyte by electronegativity modulation: Towards efficient ammonia-cracked hydrogen fuel cells. JOURNAL OF MEMBRANE SCIENCE 2024, 697.
7. Jin, C. Q.; Liao, Y. C.; Zhang, A. J.; Zhao, S. Q.; Wang, R.; Li, J. S.; Tang, H. L., Low-Pt anodes with gradient molybdenum isomorphism for high performance and anti-CO poisoning PEMFCs. NANO ENERGY 2024, 122.
8. Li, H.; Wang, R.; Song, J. P.; Liu, D.; Gao, H. Y.; Chao, Y. M.; Tang, H. L., In Situ-Constructed LixMoS2 with Highly Exposed Interface Boosting High-Loading and Long-Life Cathode for All-Solid-State Li-S Batteries. ENERGY & ENVIRONMENTAL MATERIALS 2024, 7 (4).
9. Luo, R.; Wang, R.; Cheng, Y.; Meng, Z. H.; Wang, Y.; Guo, Z. H.; Xu, B. B.; Xia, Y. N.; Tang, H. L., Yttrium Oxide Nanoclusters Boosted Fe-N4 and Fe4N Electrocatalyst for Future Zinc-Air Battery. ADVANCED FUNCTIONAL MATERIALS 2024, 34 (11).
10. Wu, M. J.; Song, J. P.; Lei, J. H.; Tang, H. L., An artificial interphase enables stable PVDF-based solid-state Li metal batteries. NANO RESEARCH 2024, 17 (3), 1482-1490.
11. Li, H.; Wang, R.; Zhao, S. Q.; Song, J. P.; Liao, Y. C.; Tang, H. L., Sulfur/carbon cathode composite with LiI additives for enhanced electrochemical performance in all-solid-state lithium-sulfur batteries. ADVANCED COMPOSITES AND HYBRID MATERIALS 2023, 6 (5).
12. Jin, C. Q.; Wu, F. L.; Tang, H. B.; Pan, H. F.; Chen, Z. D.; Wang, R.; Meng, Z. H.; Li, J. S.; Tang, H. L., Confined tuning of the charge distribution of Pt electrocatalyst for reinforcing anti-poisoning ability: Toward efficient separation of hydrogen from gases containing ammonia. CHEMICAL ENGINEERING JOURNAL 2023, 475.
13. Song, J. P.; Peng, X.; Liu, D.; Li, H.; Wu, M. J.; Fang, K.; Zhu, X. X.; Xiang, X. Y.; Tang, H. L., On-site conversion reaction enables ion-conducting surface on red phosphorus/carbon anode for durable and fast sodium-ion batteries. JOURNAL OF ENERGY CHEMISTRY 2023, 80, 381-391.
14. Zhang, A. J.; Zhu, G.; Zhai, M. Y.; Zhao, S. Q.; Zhu, L. Y.; Ye, D. H.; Xiang, Y.; Tian, T.; Tang, H. L., Construction of catalyst layer network structure for proton exchange membrane fuel cell derived from polymeric dispersion. JOURNAL OF COLLOID AND INTERFACE SCIENCE 2023, 638, 184-192.
15. Tian, T.; Cheng, Y.; Sun, Z. F.; Huang, K.; Lei, M.; Tang, H. L., Carbon nanotubes supported oxygen reduction reaction catalysts: role of inner tubes. ADVANCED COMPOSITES AND HYBRID MATERIALS 2023, 6 (1).
16. Xia, Y. N.; Cheng, Y.; Wang, R.; Meng, Z. H.; Meyer, Q.; Zhao, C.; Zhang, H. N.; Luo, R.; Li, Y.; Tang, H. L., Porous nanosheet composite with multi-type active centers as an efficient and stable oxygen electrocatalyst in alkaline and acid conditions. SCIENCE CHINA-MATERIALS 2023, 66 (4), 1407-1416.
17. Wang, R.; Meng, Z. H.; Yan, X. M.; Tian, T.; Lei, M.; Pashameah, R. A.; Abo-Dief, H. M.; Algadi, H.; Huang, N. N.; Guo, Z. H.; Tang, H. L., Tellurium intervened Fe-N codoped carbon for improved oxygen reduction reaction and high-performance Zn-air batteries. JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY 2023, 137, 215-222.
18. Wu, M. J.; Liu, D.; Qu, D. Y.; Lei, J. H.; Zhang, X.; Chen, H. P.; Tang, H. L., In-situ polymerized composite polymer electrolyte with cesium-ion additive enables dual-interfacial compatibility in all-solid-state lithium- metal batteries. JOURNAL OF COLLOID AND INTERFACE SCIENCE 2022, 615, 627-635.
19. Meng, Z. H.; Zhu, G.; Wu, J. W.; Wang, R.; Tian, T.; Tang, H. B.; Luo, R.; Ye, D. H.; Zhang, R. M.; Kwofie, F.; Cheng, Y.; Tang, H. L., Gradient Co/Zn bimetallic coordinated polymer-derived hierarchically porous carbon for boosted oxygen electrocatalysts of rechargeable Zn-air batteries. MATERIALS TODAY ENERGY 2022, 24.
20. Wu, Y. R.; Liu, D.; Qu, D. Y.; Li, J. S.; Xie, Z. Z.; Zhang, X.; Chen, H. P.; Tang, H. L., Porous oxygen-deficient TiNb2O7 spheres wrapped by MXene as high-rate and durable anodes for liquid and all-solid-state lithium-ion batteries. CHEMICAL ENGINEERING JOURNAL 2022, 438, 2408383.