赵子建

预聘助理教授

电子邮箱:zjzhao@tongji.edu.cn

个人简介

  主要从事新型人工光合成体系的开发应用及复杂反应机制研究,开发了一系列基于连续光致电子转移以及光催化剂结构重构的新型光合成体系,通过时间分辨吸收光谱技术阐明了其复杂电子转移动力学机制,在惰性分子(CO2、N2等)转化领域取得了一系列进展。目前在Nat. Chem., J. Am. Chem. Soc., Angew. Chem. Int. Ed., Nat. Commun.等期刊共发表论文18篇,其中以第一作者(含共同第一作者)身份发表J. Am. Chem. Soc.3篇,其中2篇为封面文章。

教育工作经历

  • 2015.09-2019.06  中山大学化学学院,学士

  • 2019.09-2024.06  复旦大学化学系,博士

  • 2024.07-2026.07  复旦大学化学系,博士后

  • 2026.09-至今        best365中国官方网站,预聘助理教授

研究方向

  • 复杂光反应体系中的时间分辨光谱研究

  • 基于光催化剂结构重构的人工光合成

  • 人工智能辅助的新型光合成体系开发与构建

荣誉奖励

  • 博士生国家奖学金

  • 复旦大学优秀员工

  • 上海市优秀毕业生

  • 中国化学会第33届学术年会优秀墙报奖

主要科研项目

  • 2024年度国家资助博士后研究人员计划B档资助

  • 中国博士后科学基金第76批面上资助

  • 中国博士后科学基金第18批特别资助

  • 2024年上海市“超级博士后”激励计划

代表性论文

  • Zhao, Z.; Niu, F.; Li, P.; Wang, H.; Zhang, Z.; Meyer, G. J.*; Hu, K.*, Visible Light Generation of a Microsecond Long-Lived Potent Reducing Agent. J. Am. Chem. Soc. 2022, 144 (16), 7043-7047. (Selected as the Front Cover Article)

  • Zhao, Z.; Li, J.; Yuan, W.; Cheng, D.; Ma, S.; Li, Y.-F.; Shi, Z.-J.; Hu, K.*, Nature-Inspired Photocatalytic Azo Bond Cleavage with Red Light. J. Am. Chem. Soc. 2024, 146 (2), 1364-1373. (Selected as the Supplementary Cover Article)

  • Li, P.#; Zhao, Z.#; Tian, L.#; Yang, W.; Fan, J.; Zhang, C.*; Hu, K.*, Harnessing Potent Excited-State Reductive Power of Pyrene-Modified N-heterocyclic Carbene-Stabilized Au13 Nanoclusters for Four-Electron Nitroarene Reduction with Near-Unity Selectivity. J. Am. Chem. Soc. 2025, 147 (49), 44817-44824.

  • Yuan, Y.; Zhu, X.; Cheng, Z.; Zhao, Z.; Hu, K.; Zhang, J.; Yang, J.*, [2+2] Photocycloaddition reactions of sulfinylamines with alkenes to access β-sultam derivatives. Nat. Chem. 2026, 18, 1470-1479. 5.Yang, W.#; Li, P.#; Duanmu, K.#; Zhao, Z.; Tian, L.; Zhai, D.; Sherman, B. D.; Shi, Z.-J.*; Hu, K.* Lithium-Germanium Alloy Interfaces for Efficient Low-Pressure Ammonia Synthesis. Angew. Chem. Int. Ed. 2026, 65 (31), e9951729.

  • Tian, L.; Liu, R.; Zhao, Z.; Li, P.; Yang, W.; Niu, F.; Hu, K.* Panchromatic solar absorption enables multi-photon CO2 carboxylation: mechanistic insights in consecutive photoinduced electron transfer. Chin. Chem. Let. 2026, 37 (9), 112521.

  • Yang, W.; Li, P.; Han, Y.; Zhao, Z.; Tian, L.; Zhang, Z.; Humphrey, M. G.; Zhang, C.*; Hu, K.*, Two-step coupled photoelectrochemical chlorination and oxygenation of C(sp3)–H bonds mediated by chlorine radicals over a modified BiVO4 photoanode. Chem. Sci. 2025, 16 (43), 20229-20238.

  • Lin, Z.#; Yu, X.#; Zhao, Z.; Ding, N.; Wang, C.; Hu, K.*; Zhu, Y.*; Guo, J.* Controlling crystallization in covalent organic frameworks to facilitate photocatalytic hydrogen production. Nat. Commun. 2025, 16 (1), 1940.

  • Li, P.; Liu, R.; Zhao, Z.; Yang, W.; Niu, F.; Tian, L.; Hu, K.*, Visible-Light-Driven Chlorine-Atom-Mediated Efficient and Selective Cleavage of C–C Bond in Lignin Models. ACS Sustainable Chem. Eng.2024, 12 (1), 10-17.

  • Kang, W.-J.#; Li, B.#; Zhao, Z.; Sun, S.; Feng, C.; Hu, K.*; Houk, K. N.; Guo, H.*, Generation of Thioxanthone Hydrogen Anion by Double Photoreduction and Uses for Catalytic Photoreductions. ACS Catal. 2023, 13 (20), 13588-13596.

  • Han, Y.; Chang, M.; Zhao, Z.; Niu, F.; Zhang, Z.; Sun, Z.; Zhang, L.; Hu, K.*, Selective Valorization of Glycerol to Formic Acid on a BiVO4 Photoanode through NiFe Phenolic Networks. ACS Appl. Mater. Interfaces 2023, 15 (9), 11678-11690.

  • Niu, F.; Zhou, Q.; Han, Y.; Liu, R.; Zhao, Z.; Zhang, Z.; Hu, K.* Rapid Hole Extraction Based on the Cascade Band Alignment Boosts Photoelectrochemical Water Oxidation Efficiency. ACS Catal. 2022, 12 (16), 10028-10038.

  • He, L.*; Zhang, M.-F.; Pan, Z.-Y.; Wang, K.-N.; Zhao, Z.-J.; Li, Y.; Mao, Z.-W.*, A mitochondria-targeted iridium(iii)-based photoacid generator induces dual-mode photodynamic damage within cancer cells. Chem. Commun. 2019, 55 (70), 10472-10475.

  • Wang, K.-N.; Cao, Q.*; Liu, L.-Y.; Zhao, Z.-J.; Liu, W.; Zhou, D.-J.; Tan, C.-P.; Xia, W.; Ji, L.-N.; Mao, Z.-W.*, Charge-driven tripod somersault on DNA for ratiometric fluorescence imaging of small molecules in the nucleus. Chem. Sci. 2019, 10 (43), 10053-10064.


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