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张伟职称: 直属机构: 化学与分子工程学院 学科: |
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教育经历2015-2019 荷兰阿姆斯特丹大学 化学工程 博士 (导师: G. Rothenberg教授) 2012-2015 华东师范大学 应用化学 硕士 (导师: 何鸣元院士/吴海虹教授) 2008-2012 太原理工大学 应用化学 学士 工作经历2025-至今 华东师范大学 研究员/博导 (紫江优秀青年学者) 2023-2024 美国太平洋西北国家实验室 博士后 & Group leader (合作导师:J. Lercher教授) 2020-2023 德国慕尼黑工业大学 博士后 & Group leader (合作导师:J. Lercher教授) 个人简介张伟,华东师范大学研究员,博士生导师,国家高层次青年人才计划入选者。2015年在华东师范大学获得硕士学位;2019年博士毕业于荷兰阿姆斯特丹大学; 2020至2024年,先后在德国慕尼黑工业大学和美国西北太平洋国家实验室从事博士后研究。2025年加入华东师范大学,入选国家级和上海市海外高层次青年人才引进计划,以及华东师范大学紫江优秀青年学者计划。 研究方向聚焦绿色碳科学领域的前沿催化反应,致力于开发高效、新型催化体系。通过精准调控催化剂结构,结合原位光谱技术,系统揭示表界面催化机理与反应路径;发展低温串联催化体系,推动碳资源的高值化转化,为可再生能源体系的构建提供科学基础。相关成果以第一作者/通讯作者发表于Science (2篇)、Nat. Commun.、Angew. Chem. Int. Ed.、ACS Catalysis等权威期刊。 《课题组网站:www.wzhangx.com》 社会兼职研究方向研究方向: 本课题组依托华东师范大学分子与工程学院、石油化工分子转化与反应工程全国重点实验室以及上海市绿色化学与化工过程绿色化重点实验室等一流科研平台。聚焦绿色碳科学领域的前沿研究方向,致力于开发创新催化技术,推动可持续能源与资源的高效利用。 代表性成果: 1. W. Zhang,* et al. Science 2025, 390, 88-94. 2. W. Zhang,* et al. Science 2023, 379, 807–811. 3. W. Zhang,* et al. Nat. Commun. 2024,15, 5785. 4. W. Zhang, et al. Angew. Chem. Int. Ed. 2024, 63, e202319580. 5. W. Zhang*, et al. Angew. Chem. Int. Ed. 2025, 64, e202500559. 6. W. Zhang, et al. ACS Catal. 2020, 10, 3958-3967. 7. W. Zhang, et al. ACS Catal. 2018, 8, 2365-2374. 招生与培养本课题组常年欢迎有志于科研的 硕士、博士、博士后和科研助理申请! 并欢迎有科研兴趣与热情的本科生参与科研训练! 应聘者请将个人简历发送至邮箱(wzhangx@chem.ecnu.edu.cn),邮件标题格式为“应聘岗位+姓名”,优秀成员可推荐至国外顶尖课题组交流学习! 开授课程本科生:《物理化学II》、《物理化学实验I》、《物理化学实验II》 研究生:《绿色碳科学基础与前沿》、《现代催化研究方法》 科研项目1. 国家自然科学基金优秀青年科学基金项目(海外)(2026-2028), 在研 2. 华东师范大学“紫江优秀青年”科研启动经费 (2026-2031), 在研 3. 国家自然科学基金面上项目 (塑料降解 | 2026-2029), 在研 4. 科技部国家重点研发计划青年项目(CO2氢甲酰化 | 2026-2028),在研 5. 中石化石科院联合课题,(电催化CO2和H2O制备合成气 | 2026-2027),在研 学术成果期刊论文 (详见课题组主页:www.wzhangx.com) 17. S. Li, W. Tu, W. Zhang*, P. Yan, D. Chen, Z. Wang, W. Chen, P. Xu, M. Chu, M. Cao, Q. Zhang, F. Zhang, J. Chen, J. A. Lercher. Oxygen-mediated tandem polyethylene upcycling for selectvie aromatic synthesis. National Science Review, 2026, nwag207 [Link|] 16. W. Zhang,* B. Yang, B. Jackson, J. Zhao, H. Shi, D. Camaioni, S. Kim, H. Wang, J. Szanyi, M. Lee, J. G. Chen and J. A. Lercher*, Integrating Low-temperature PVC and Polyolefin Upgrading. 2025, Science 2025, 390, 88-94.[Link|] 15. W. Zhang,* S. Kim, M. L. Sarazen, M. He, J. G. Chen and J. A. Lercher*, Advances and Challenges in Low-temperature Upcycling of Waste Polyolefins via Tandem Catalysis, Angew. Chem. Int. Ed. 2025, 64, e202500559. [Link| 14. S. Kim, B. Yang, O. Y. Gutiérrez, W. Zhang, C. Lizandara-Pueyo, P. Ingale, I. Jevtovikj, R. Grauke, J. Szanyi, H. Wang, S. A. Schunk, J. A. Lercher, Ru-Catalyzed Polyethylene Hydrogenolysis under Quasi-Supercritical Conditions. JACS Au 2025, 5,1760.[Link| 13. W. Zhang,* R. Khare, S. Kim, L. Hale, W. Hu, C. Yuan, Y. Sheng, P. Zhang, L. Wahl, J. Mai, B. Yang, O. Y. Gutiérrez, D. Ray, J. Fulton, D. Camaioni, J. Hu, H. Wang, M. Lee and J. A. Lercher*, Active species in chloroaluminate ionic liquids catalyzing low-temperature polyolefin deconstruction. Nat. Commun. 2024,15, 5785.(Editor's Highlight paper) [Link|
12. W. Zhang, H. Yao, R. Khare, P. Zhang, B. Yang, W. Hu, D. Ray, J. Hu, D. Camaioni, H. Wang, S. Kim, M. Lee, M. Sarazen, J. G. Chen, J. A. Lercher,* Hydride transfer as key to catalytic upcycling of polyethylene into liquid alkanes. Angew. Chem. Int. Ed. 2024, 63, e202319580. [Link|
11. W. Zhang,* S. Kim, L. Wahl, R. Khare, L. Hale, J. Hu, D Camaioni, O.Gutiérrez, Y. Liu, J. A. Lercher,* Low-temperature upcycling of polyolefins into liquid alkanes via tandem cracking-alkylation. Science 2023, 379, 807-811.(高被引) [Link|
10. W. Zhang, P. Oulego, S. K. Sharma, X. Yang, L-J. Li, G. Rothenberg, N. R. Shiju, Self-exfoliated Synthesis of Transition Metal Phosphate Nanolayers for Selective Aerobic Oxidation of Ethyl Lactate to Ethyl Pyruvate. ACS Catal. 2020, 10, 3958-3967. [Link|
9. W. Zhang, C. Xu, T. Kobayashi, Z. Guo, M. Pruski, W Huang, Hydrazone-linked heptazine-based mesoporous conjugated polymer for visible-light-driven oxidation of benzyl alcohols with molecular oxygen.Chem. Eur. J. 2020, 26, 7358-7364.
8. W. Zhang, Y. Mei, X. Huang, P. Wu, H. Wu, M. Y. He, Size-controlled growth of silver nanoparticles onto functionalized ordered mesoporous polymers for efficient CO2 upgrading. ACS Appl. Mater. Interfaces 2019, 11, 47, 44241.
7. W. Zhang, Y. Mei, P. Wu, H. Wu, M.Y. He, Highly tunable periodic imidazole-based mesoporous polymers as cooperative catalysts for efficient carbon dioxide fixation. Catal. Sci. Technol. 2019, 9, 1030-1038. [Link|
6. W. Zhang, P. Oulego, T. K. Slot, G. Rothenberg, N. R. Shiju, Selective aerobic oxidation of lactate to pyruvate catalysed by vanadium-nitrogen-doped carbon nanosheets.ChemCatChem 2019,11, 3831-3387. [Link|
5. W. Zhang, G. Innocenti, P. Oulego, H. Wu, B. Ensing, F. Cavani, G. Rothenberg, N. R. Shiju, Highly selective oxidation of ethyl lactate to ethyl pyruvate catalysed by mesoporous vanadia–titania. ACS Catal. 2018, 8, 2365-2374. [Link|
4. W. Zhang, B. Ensing, G. Rothenberg, N. R. Shiju, Designing effective solid catalysts for biomass conversion: Aerobic oxidation of ethyl lactate to ethyl pyruvate. Green Chem. 2018, 20, 1866-1873. [Link|
3. W. Zhang, G. Innocenti, M. Ferbinteanu, E. V. Ramos Fernandez, A. Sepulveda-Escribano, H. Wu, F. Cavani, G. Rothenberg, N. R. Shiju, Understanding the oxidative dehydrogenation of ethyl lactate to ethyl pyruvate over vanadia/titania catalysts. Catal. Sci. Technol. 2018, 8, 3737-3747.(封面文章) [Link|
2. W. Zhang, T. Liu, H. Wu, P. Wu, M. Y. He, Direct synthesis of ordered imidazolyl-functionalized mesoporous polymers for efficient chemical fixation of CO2. Chem. Commun. 2015, 51, 682-684. [Link| 1. W. Zhang, Q. Wang, H. Wu, P. Wu, M. Y. He, A highly ordered mesoporous polymer supported imidazolium-based ionic liquid: an efficient catalyst for cycloaddition of CO2 with epoxides to produce cyclic carbonates. Green Chem. 2014, 16, 4767-4774. [Link| 荣誉及奖励 |