
2016/12 – 至今,南开大学,化学学院,教授
2009/01 – 2016/12,南开大学,化学学院,副教授
2013/11 – 2014/11,美国国立卫生研究院,访问学者
2001/12 – 2008/12,南开大学,化学学院,讲师
1999/07 – 2001/12,南开大学,元素有机化学研究所,助教
2003/09 – 2007/12,南开大学,化学学院,博士
1996/09 – 1999/07,南开大学,元素有机化学研究所,硕士
1992/09 – 1996/07,华中师范大学,化学系,学士
南开大学教学名师
智慧教学之星
教育部自然科学一等奖(2013,第二完成人)
中国测试协会一等奖(2008,第二完成人)
课题组在高选择性光学探针、复杂样品分离分析、光催化界面构筑与分析等方面具有良好的研究基础,已在JACS,Adv. Mater., Adv. Funct. Mater.,Appl. Catal. B-Environ., Chem. Sci., Green Chem.,Small, Anal. Chem.等期刊发表研究论文60余篇。
部分代表作如下:
(1)Zheng-Wu Wang‡, Meng Pei ‡, An-An Liu ‡, Yingjun Chen, Zaiping Zeng*, Dai-Wen Pang *, He-Fang Wang* Simultaneous Localization of Electrons/Holes by Surface Cationic Dangling-Bonds/Vacancies for Synergistically Boosting Photocatalytic Activity. Journal of the American Chemical Society 2026, 148, 17303-17313.
(2)Yu,Y.; Wang, Z.-W.; Chen, J.-H.; Wu, Z.-H.; Wang, H.-F.*; Zhu, Y.-Z. * Microbe-Mediated Precision Doping of Transition Metal Oxide in Alumina Nanorods for Highly Selective Catalysis. Small Method 2026, 0:e70780.
(3)Wang, M.-M.; Guo, H.; Wang, Z.-W.; Yan, Y.-Q.; Zhu, Y.-Z.;* Wang, H.-F.* Si-doped g-Al2O3 from solid-phase grinding for highly efficient one-step production of L, L-lactide. Green Chemistry 2026, 28(1), 336 -342.
(4)Wang, Z.-W.; Tan, X.; Wu, Z.-H.; Chen, J.-H.; Zhu, Y.-Z.;* Wang, H.-F.* High Yield Regeneration of 1,4-NAD(P)H by Selective Adsorption-/Desorption-Mediated Visible-Light Photocatalysis on a Noble-Metal-Free Catalyst. Journal of Materials Chemistry A 2025, 13(12), 8726-8733.
(5)Wang, Z.-W.; Yu, Y.; Tan, X.; Wu, Z.-H.; Huang, T.-Y.; Zhu, Y.-Z.;* Pang, D.-W.;* Wang, H.-F.* Urea Enzymolysis-Induced Ions Replacing: A Promising Strategy for One-Pot Loading of Core–Shell Heterojunction on 1D Catalyst Support. Advanced Functional Materials 2025, 35(8), 2415502
(6)Wang, Z.-W.; Xiao, M.-Y.; Tang, J.-F.; Li, M.-Q.; Yin, X.-Y.; Wang, T.; Zhu, Y.-Z.*; Pang, D.-W.; Wang H.-F.*Surface engineering of Al2O3 nanotubes by ureasolysis method for activating persulfate degradation of antibiotics. Journal of Hazardous Materials 2023, 457, 131844
(7)Yang, X.-T.; Tan, X.; Yin, X.-Y.; Sun, Y.; Zhu, Y.-Z.*; Wang, H.-F*. Cr3+-ZnGa2O4@Pt for Light-Triggered Dark-Catalytic Regeneration of Nicotinamide Coenzymes without Other Electron Mediators. ACS Applied Materials & Interfaces 2023, 15(4), 5273-5282
(8)Zhang Y.#; Wang Z.-W.#; Yang, X.-T.; Zhu, Y.-Z.*; Wang H.-F.* Afterglow-Catalysis and Molecular Imprinting: A Promising Union for Elevating Selectivity in Degradation of Antibiotics. Applied Catalysis B: Environmental and Energy, 2022, 305, 121025 (# Co-first author)
(9)Wang T.; Wang Z.-W.; Zhang Y.; Yang, X.-T.; Zhu, Y.-Z.*; Wang H.-F.* Porous Ga2O3 Nanotubes Derived from Urease-Mediated Interfacially-Grown NH4Ga(OH)2CO3 for High-Efficient Hydrogen Evolution. Small, 2021, 17(52), 2104195.
(10) Wang, H.-F.; Zhu, Y.-Z.; Yan, X.-P.*; Gao, R.-Y.; Zheng, J.-Y. A Room Temperature Ionic Liquid Mediated Non-hydrolytic Sol-Gel Methodology to Prepare Molecularly Imprinted Silica-Based Hybrid Monoliths for Chiral Separation. Advanced Materials, 2006,18(24), 3266-3270.