
张伟 副研究员 博士 硕士生导师
邮箱:wzhang@ujs.edu.cn
地址:江苏大学能源研究院(未来技术学院)动力楼310
个人简介
张伟,河北石家庄人,工学博士。2012年6月毕业于太原科技大学,获得工学学士学位。2017年6月毕业于北京化工大学,获得工学博士学位。2017年7月-2020年12月先后于北京化工大学和美国内布拉斯加州大学林肯分校从事博士后研究。长期从事原子级分散金属电催化剂的设计与开发的研究。近年来,以第一和通讯作者的身份在Nat. Sustain., Angew. Chem. Int. Ed., Adv. Mater., Adv. Funct. Mater., J. Phys. Chem. L和ACS Catal. 等期刊发表SCI论文40余篇。
研究方向
1. 理论与计算化学(能源转化与存储领域原子级分散金属催化剂电催化剂的设计与开发,大分子体系分块计算方法开发)
2. 燃料电池和空气电池材料的制备(能源转化与存储领域原子级分散金属催化剂的合成与制备)
主持项目
1. 非贵金属团簇负载对单原子催化剂表面结构和氧催化性能的调控机制研究,先进能源材料化学教育部重点实验室项目,2026/01至2027/12
2. 异核金属双原子催化剂配位环境对其电催化性能的调控机制研究,国家自然科学基金/青年项目,2023/01至2025/12
3. 基于机器学习的氧还原反应电催化剂筛选及其增强催化性能的机制研究的研究,江苏省自然科学基金/青年项目,2021/07-2024/06
4. 配位环境对Fe基异核金属双原子催化剂氧催化性能的调控机制研究,中国博士后科学基金/面上项目 2024/06-2026/05
5. 冠醚与铀配合物的理论研究 横向项目 2021/06-2023/05
6. COF-DL229吸附金属离子的研究 横向项目 2021/06-2023/05
学术论文(第一作者/通讯作者)
[1] Feizpoor S., Chen H-C , Zhang X., Liu Y., Li L., Huang J., Li Z.*, Humayun M., Zhang Wei* Xu C., Zhang H., Rostamnia S., Wang C.* Chloride-Tolerant Iridium Single-Atom Modulated Nickel Hydroxide for Industrial-Current-Density Seawater Electrolysis. Advanced Functional Materials, 2026, e75256.
[2] Zhang D, Jiang D, Liu Y, Chen Q, Xing L, Huang H, Zhang Wei*, Shi W*, Kang Z*, Mao B*. Confined Cu111 Nanolaminates as a Single‐Phase Nanoreactor for Efficient Urea Electrosynthesis. Angewandte Chemie International Edition, 2026, 65, e2242110.
[3] Tung, Ching-Wei; Zhang, Wei*; Lai, T.; Wang, J.; Chu, Y.-C.; Wang, G.-B.; Hsu, C.-S.; Liao, Y.-F.; Hiraoka, N.; Ishii, H.; Zeng, X. C.*; Chen, H. M.*; Spin crossover-driven diiron electrocatalyst boosts sustainable water oxidation, Nature Sustainability, 2025, 8, 793-802.
[4] Zhang D. #, Jiang D. #, Mao B.,* Liu Y.,* Chen Q., Li H., Xing L., Huang H., Zhang Wei,* Shi W.,* and Kang Z.; Transforming CO Poisoning into a Critical Step for Electrocatalytic C─N Coupling to Urea in a Carbon-Dot-Dominated Nanoreactor, Angewandte Chemie International Edition, 2025, 64, e20251125.
[5] Liu, X.; Tang, J.; Zhao, F.; Zhou, M.; Ye, S.; Hong, D.; Tian, Y.; Zhao, Y.; Huang, S.; Tian, F.; Song, T.; Cai, X.; Tian, Y.; Zhang, Wei.*; Li, Q.*; Zhu, Y.*, Atomically Engineered Trimetallic Nanoclusters Toward Enhanced Photoluminescence and Photoinitiation Activity. Advanced Materials 2025, 2417984.
[6] Deng, D.; Zhang, Wei*; Qian, J.; Chen, Y.; Pu, C.; Li, H.; Li, H.*; Xu, L.*, Charge Delocalization Regulation of Atomically Dispersed Tungsten Sites by Axial Sulfur Atoms for Highly Active Oxygen Reactions in Low-temperature Zinc-Air Batteries. Nano Energy 2025, 134, 110579.
[7] Zhang, Wei; Cheng, X.; Liang, X.; Mao, K.*; Zeng, X. C.*, Mechanistic Study of Highly Active Bifunctional Double-Atom Electrocatalysts for Oxygen Reduction and Oxygen Evolution Reactions. Journal of Physical Chemistry Letters 2024, 15 (44), 10977-10984.
[8] Deng, J.*; Li, G.; Yan, D.; Zhang, Wei*; Feng, K.; Nie, K.; Liu, C.; Lv, X.*; Zhong, J.*, Programmable Wet-Interfacial Joule Heating to Rapidly Synthesize Metastable Protohematite Photoanodes: Metal and Lattice Oxygen Dual Sites for Improving Water Oxidation ACS Catalysis 2024, 14 (14), 10635-10647.
[9] Wang, B.; Chen, H.; Zhang, Wei*; Liu, H.; Zheng, Z.; Huang, F.; Liu, J.; Liu, G.; Yan, X.; Weng, Y.-X.; Li, H.; She, Y.*; Chu, P. K.*; Xia, J.*, Semimetallic Bismuthene with Edge-Rich Dangling Bonds: Broad-Spectrum-Driven and Edge-Confined Electron Enhancement Boosting CO2 Hydrogenation Reduction. Advanced Materials 2024, 36 (19) 2312676.
[10] Zhang, Wei.; Liu, J.; Jin, X.; Gu, X.*; Zeng, X. C.; He, X.*; Li, H.*, Quantitative Prediction of Aggregation-Induced Emission: A Full Quantum Mechanical Approach to the Optical Spectra. Angewandte Chemie International Edition 2020, 59 (28), 11550-11555.