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韦之栋

  • 长聘教轨副教授
  • 新能源与储能研究中心(碳捕集与利用研究所)
  • 电话:64355111—6296
  • 邮箱:weizhidong1013@sjtu.edu.cn; weizhidong1013@126.com
  • 办公地点:东部行政楼205

学术经历

2016.09-2020.06 中国 上海交通大学  动力工程及工程热物理  研究生/博士

2013.09-2016.06 中国 山东大学  环境科学与工程  研究生/硕士               

2008.09-2012.06 中国 黑龙江大学  环境科学  本科/学士

工作经历

2020.07-2022.09 中国 上海交通大学 动力工程及工程热物理 博士后

2022.10-2025.06 中国 上海交通大学 yl88858永利集团 长聘教轨助理教授

2025.7月至今        中国 上海交通大学 yl88858永利集团 长聘教轨副教授

研究方向

长期从事能源与环境工程领域研究工作,目前主要围绕碳捕集富液解吸与利用开展,结合催化化学、材料科学与工程、环境科学与工程、动力工程及工程热物理等多学科的交叉,重点关注碳捕集富液中捕集剂、水等物质与能量的催化反应中氢物种在产生、迁移及转化过程中所涉及的能量流动与传输机制,具体研究方向如下:

1. 碳捕集富液太阳能光-电-热耦合制氢及化学品

2. 脉冲光辅助电化学二氧化碳解吸耦合原位转化

3. 胶体二氧化碳捕集体系的设计及富液原位转化

4. 碳捕集富液用于资源组分回收与碳氢燃料制备 

主讲课程

《氢能技术》(本科生)

《智慧能源及其应用/智慧能源工程导论》(本科生)

科研项目

1.2026.01-2027.12,新疆维吾尔自治区“两区”项目‌,子课题负责人

       2.2022.01-2024.12,国家自然科学青年基金,项目负责人

       3.2020.07-2022.09,中国博士后面上项目,项目负责人

       4.2020.07-2022.06,上海市“超级博士后”激励计划 项目负责人

       5.2018.01-2022.12,   国家重点研发计划 主要参与

       6.2017.01-2021.12,国家自然科学基金面上项目 主要参与

代表性论文

第一作者及通讯作者相关代表性论文如下:

21. Y. Zhang#, J. Chi#, L. Ma, Z. Wei, et.al. Accumulation of Positive Charges Induces an Efficiency Bottleneck  in BiVO4 Photoanodes for Water Splitting. The Journal of Physical Chemistry Letters, 2026, 17, 6840–6849. (2024级硕士生张悦共同第一作者,通讯作者,Nature 指数期刊)

      20. H. Huang, Z. Wei, J. Yan , et al. Unveiling the Mechanism of Direct-to-Indirect Bandgap Transition in the Photocatalytic Hydrogen Evolution of ZnxCd1−xS Solid Solution. Acta Physico-Chimica Sinica(物理化学学报), 2026, 42: 100141. (通讯作者,影响因子13.5)

      19. Y. Zhang, Z. Wei, et al. Key Materials Related in Electrochemical Carbon Capture Systems, Advanced Sustainable Systems, 2025, 9(10): e01015. (2023级硕士生张雨辰第一作者,通讯作者,影响因子6.1)

      18. H. Huang, Z. Wei, J. Yan, et al. NiSx modulated Spatial Charge Separation in CdS-Based Heterojunctions for Photocatalytic Hydrogen Evolution. Rare Metals, 2025,  44: 10204-10214. (通讯作者,影响因子11.0,中科院一区)

17. H. Huang , Z. Wei ,Q. Su, et al. Revealing the role of loaded aluminum in BiVO4-based solid solutions for photocatalytic overall water splitting. Journal of Catalysis, 2025, 450, 116338.(通讯作者,影响因子6.5,中科院一区)

16. Z. Wei, Y. Zhang, H. Huang, et al. Revealing the Spatial Shielding Effect of Interfacial Water Molecules in Photocatalytic CO2 Reduction from Overall Water Splitting. Inorganic Chemistry, 2025, 64, 12277–12285.(唯一第一作者&通讯作者,Nature 指数期刊)

15.  Z. Wei, J. Yan, Y. Zhang, et al. Unveiling the Enhanced Carrier Dynamics of Nanoscale Stacking Fault Effect in Al: SrTiO3 for Photocatalytic Overall Water Splitting. Applied Catalysis B: Environment and Energy, 2025, 378, 125569.(唯一第一作者&通讯作者,影响因子21.1,中科院一区)

14. Z. Wei, et.al. Gas-involved Photo- and Electro-Catalysis Roadmap Towards 2030, Chinese Chemical Letters, 2025, Accept. (通讯作者,影响因子8.9,中科院一区)

13. J. Yan, Z. Wei, W. Fang, et al. Aligning the Facet-Oriented Electric Field via Facet-Selective Doping on Truncated SrTiO3 Nanoparticles for Photoinduced Carrier Migration and Hydrogen Evolution. ACS Applied Nano Materials, 2025, 8, 4553–4564. (通讯作者,影响因子5.5)

12. Z. Wei, Y. Zhang, J. Yan, et al. Revealing the Photocatalytic Dynamic Mechanism of TiO6 Polarization Regulation in Al-Doped SrTiO3: γ-Al2O3 Phase Transformation for Trapping the Photogenerated Holes. ACS Materials Letters, 2024, 6, 5146-5153. (作为能源材料科学领域“Emerging Investigators”发表特刊,唯一第一作者&通讯作者,影响因子8.7)

11.Z.Wei,J.Yan,Y. Zhang, W. Fang, W. Shangguan. Photocatalytic water splitting and CO2 reduction with internal electric field modulation. Chemical Engineering Journal, 2024: 149267. (唯一第一作者&通讯作者,影响因子13.2,中科院一区)

10. Z. Wei, J. Yan, W. Guo, W. Shangguan. Nanoscale lamination effect by nitrogen-deficient polymeric carbon nitride growth on polyhedral SrTiO3 for photocatalytic overall water splitting: Synergy mechanism of internal electrical field modulation. Chinese Journal of Catalysis, 2023, 48, 279-289. (第一作者,影响因子17.7,中科院一区)

Before CSE 

9.Z. Wei, Y. Zhu, W. Guo, J. Liu, W. Fang, Z. Jiang, W. Shangguan, Enhanced photocatalytic overall water splitting via MOF-derived tetragonal BiVO4-based solid solution, Chemical Engineering Journal, 2021, 414, 128911.

8.Z. Wei, Y. Zhu, W. Guo, J. Liu, W. Fang, Z. Jiang, W. Shangguan, Enhanced Twisting Degree Assisted Overall Water Splitting on a Novel Nano-dodecahedron BiVO4-based Heterojunction, Applied Catalysis B: Environmental, 2020, 266, 118644. 

7.Z. Wei, J. Liu, W. Shangguan, A Review on Photocatalysis in Antibiotic Wastewater: Pollutant Degradation and Hydrogen Production. Chinese Journal of Catalysis, 2020, 41,1440-1450. (ESI高被引)

6.Z. Wei, M. Xu, J. Liu, W. Guo, Z. Jiang, W. Shangguan, Simultaneous Visible-light-induced Hydrogen Production Enhancement and Antibiotic Wastewater Degradation Using MoS2@ZnxCd1-xS: Solid Solution Strategy Assisted Photocatalysis. Chinese Journal of Catalysis, 2020, 41,103-113. 

5.Z. Wei, J. Liu, W. Fang, M. Xu, Z. Qin, Z. Jiang, W. Shangguan, Photocatalytic Hydrogen Evolution with Simultaneous Antibiotic Wastewater Degradation via the Visible-light-responsive Bismuth Spheres-g-C3N4 Nanohybrid: Waste to Energy Insight. Chemical Engineering Journal, 2019, 358, 944-954. 

4.Z. Wei, J. Liu, W. Fang, W. Guo, Y. Zhu, M. Xu, Z. Jiang, W. Shangguan, Photocatalytic Hydrogen Energy Evolution from Antibiotic Wastewater via metallic Bi nanosphere doped g-C3N4: Performances and Mechanisms. Catalysis Science & Technology, 2019, 9, 5279-5291. (封面论文)

3.Z. Wei, J. Liu, W. Fang, Z. Qin, Z. Jiang, W. Shangguan, A Visible-light Driven Novel Layered Perovskite Oxyhalide Bi4MO8X (M= Nb, Ta; X= Cl, Br) Constructed Using BiOX (X= Cl, Br) for Enhanced Photocatalytic Hydrogen Evolution. Catalysis Science & Technology, 2018, 8, 3774-3784. 

2.Z. Wei, J. Liu, W. Fang, Z. Qin, Z. Jiang, W. Shangguan, Enhanced Photocatalytic Hydrogen Evolution Using a Novel in situ Heterojunction Yttrium-doped Bi4NbO8Cl@Nb2O5, International Journal of Hydrogen Energy, 2018, 43, 14281-14292. 

1.Z. Wei, R. Wang, Hierarchical BiOBr Microspheres with Oxygen Vacancies Synthesized via Reactable Ionic Liquids for Dyes Removal, Chinese Chemical Letters, 2016, 27, 769-772. 

国家发明专利

严嘉玮,韦之栋,上官文峰,国家发明专利:一种钾离子梯度掺杂氮化碳材料的制备方法,专利号:ZL202210422019.X,授权日:2023年05月26日.

专著情况

1.Z. Ren, Z. Wei, N. Yang, R. Wang*. Chapter 5:Utilization of Polyoxometalates for NOx Adsorptive Decomposition, Photocatalysis and Greenhouse Gas CO2 Conversion, in “Polyoxometalates: Properties, Structure and Synthesis”, 115-142, Nova Science Publishers, Inc., New York, 2016 (ISBN: 978-1-53610-007-5).

2. 2017.09 《能源材料-原理及应用》上海交通大学出版社 中国,专著

学术兼职

Chinese Journal of Catalysis  青年编委,2025年至今

Energy Materials                          青年编委,2026年至今

荣誉奖励

1.博士研究生国家奖学金 2019年 中国教育部

2.2020年入选上海市“超级博士后”激励计划

        3. Chinese Journal of Catalysis期刊 2022年度 “Outstanding 论文”奖

        4. 2024年上海交通大学研究生“双碳”创新与创意大赛二等奖指导教师,排名 2/2

        5. 2025年威立Wiley中国高贡献作者奖


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