深入研究面向高效分子/离子分离的高性能纳米膜材料,重点开展对纳米材料改性、高性能分离膜制备与结构设计的研究,致力于探寻实现分离膜材料高性能化的新思路和新原理。迄今,已在Chemical Engineering Journal、Journal of Hazardous Materials、Journal of Membrane Science、Desalination等期刊上发表SCI论文20余篇,授权发明专利2件。作为负责人承担国家自然科学基金青年基金项目(2025-2027)、浙江省自然科学基金(2022-2024)、宁波市自然科学基金(2021-2023)等,主参宁波市“3315计划”创新团队项目(总经费500万元,2021-2025)。荣获浙江省科学技术奖一等奖(中空纤维纳米复合过滤膜规模化制备关键技术及工业化应用),入选宁波市甬江育才工程领军拔尖人才项目第三层次、“纳米科学与工程”学硕培育点学术骨干、“纳米纤维素关键技术研究”市级创新团队核心成员。
开设《高分子化学实验》、《高分子材料与工程专业劳动实践》、《高分子膜材料》、《生物医用高分子材料》、《化妆品科学与护肤》等课程,主持校级教改项目1项,担任高分子212班导师,荣获材料学院首届“我最喜爱的老师”提名奖,带领班级获得先进班级、优良学风班等荣誉称号。主要育人成果如下:
Z. H. Wang*, Z. Chen, Z. D. Zheng, H. Z. Liu*, L. P. Zhu*, M. C. Yang, Y. Chen, Nanocellulose-based membranes for highly efficient molecular separation, Chemical Engineering Journal. 2023, 451, 138711. (Q1,中科院一区)
Z. H. Wang, D. W. Xia, S. J. Cui, W. P. Yu, B. T. Wang, H. Z. Liu*, A high-capacity nanocellulose aerogel uniformly immobilized with a high loading of nano-La(OH)3 for phosphate removal, Chemical Engineering Journal. 2022, 433, 134439. (Q1,中科院一区)
D. W. Xia, M. X. Zhang, C. C. Tong,Z. H. Wang*, H. Z. Liu*, L. P. Zhu*, In-situ incorporating zwitterionic nanocellulose into polyamide nanofiltration membrane towards excellent perm-selectivity and antifouling performances, Desalination. 2022, 521, 115397. (Q1,中科院一区)
Z. H. Wang*, D. W. Xia, B. T. Wang, H. Z. Liu*, L. P. Zhu*, Highly permeable polyamide nanofiltration membrane incorporated with phosphorylated nanocellulose for enhanced desalination, Journal of Membrane Science. 2022, 647, 120339. (Q1,中科院一区)
J. Ru†,Z. H. Wang†, C. C. Tong, H. Z. Liu*, G. Wang, Z. Peng, Nonleachable antibacterial nanocellulose with excellent cytocompatible and UV-shielding properties achieved by counterion exchange with nature-based phenolic acids, ACS Sustainable Chemistry & Engineering. 2021, 9, 15755–15767. (Q1,中科院一区, co-first author)
Z. H. Wang, S. Guo, B. Zhang, J. C. Fang, L. P. Zhu*, Interfacially crosslinked β-cyclodextrin polymer composite porous membranes for fast removal of organic micropollutants from water by flow-through adsorption, Journal of Hazardous Materials. 2020, 384, 121187. (Q1,中科院一区)
Z. H. Wang, S. Guo, B. Zhang, L. P. Zhu*, Hydrophilic polymers of intrinsic microporosity as water transport nanochannels of highly permeable thin-film nanocomposite membranes used for antibiotic desalination, Journal of Membrane Science. 2019, 510, 122-130. (Q1,中科院一区)
Z. H. Wang, B. Zhang, C. J. Fang, Z. K. Liu, J. C. Fang, L. P. Zhu*, Macroporous membranes doped with micro-mesoporous β-cyclodextrin polymers for ultrafast removal of organic micropollutants from water, Carbohydrate Polymers. 2019, 222, 114970. (Q1,中科院一区)
Z. H. Wang, F. C. Cui, Y. W. Pan, L. X. Hou, B. Zhang, Y. Q. Li, L. P. Zhu*, Hierarchically micro-mesoporous β-cyclodextrin polymers used for ultrafast removal of micropollutants from water, Carbohydrate Polymers. 2019, 213, 352–360. (Q1,中科院一区)
Z. H. Wang, P. B. Zhang, F. Hu, Y. F. Zhao, L. P. Zhu*, A crosslinked β-cyclodextrin polymer used for rapid removal of a broad-spectrum of organic micropollutants from water, Carbohydrate Polymers. 2017, 177, 224–231. (Q1,中科院一区)
Z. H. Wang, C. J. Fang, L. Cheng, F. Hu, C. J. Liu, Z. K. Yao, L. P. Zhu*, Adsorptive separation membrane: from basic research to practical application, Membrane Science and Technology. 2021, 41, 124–132.