韩宇
教授 博导
个人简介
教育背景 1998.9—2003.7 吉林大学 化学专业 博士 1994.9—1998.7 吉林大学 化学专业 学士 工作经历 2023— 中国华南理工大学教授 2009—2023 沙特阿卜杜拉国王科技大学教授 2009.2—2009.6 英国帝国理工访问教授 2003—2008 新加坡A-star博士后/研究员/资深研究员
研究领域
主要从事多孔材料的合成与应用(催化、分离、水处理),以及电子束敏感材料的高分辨电子显微成像方面的研究,是超低剂量电子显微成像技术的联合发明人
近期论文
Shen, J.; Aljarb, A.; Cai, Y.; Liu, X.; Min, J.; Wang, Y.; Wang, Q.; Zhang, C.; Chen, C.; Hakami, M.; Fu, J. H.; Zhang, H.; Li, G.; Wang, X.; Chen, Z.; Li, J.; Dong, X.; Shih, K.; Huang, K. W.; Tung, V.; Shi, G.; Pinnau, I.; Li, L. J.; Han, Y., Engineering grain boundaries in monolayer molybdenum disulfide for efficient water-ion separation. Science 2025, 387, 776-782 Li, G.; Chen, C.; Zhang, H.; Li, Z. H.; Sun, C.; Shi, Z.; Han, Y., Unraveling Various Stacking Modes and Local Structures in Poly(triazine imide) Materials via Low-Dose Electron Microscopy. Journal of the American Chemical Society 2025, 147, 3896-3903 Liu, Y.; Liu D.; Liu Z.; Mao M.; Zhang D.; Tao J.; Zhang H.; Song K.; Liu L.; Han Y., Electron Microscopy Reveals Inhomogeneous Adsorption of Iodine and Concurrent Defect Formation in a Metal–Organic Framework. Journal of the American Chemical Society 2025, 147, 3959-3966 Chen, Z.; Lei, Q.; Ma, Y.; Wang, J.; Yan, Y.; Yin, J.; Li, J.; Shen, J.; Li, G.; Pan, T.; Dong, X.; Davaasuren, B.; Zhang, Y.; Liu, J. Z.; Tao, J.; Han, Y., Highly sensitive, responsive, and selective iodine gas sensor fabricated using AgI-functionalized graphene. Nature Communications 2025, 16, 1169 Li, G.; Xu, M.; Tang, W., Q.; Liu, Y.; Chen, C.; Zhang, D.; Liu, L.; Ning, S.; Zhang, H.; Gu, Z. Y.; Lai, Z.; Muller, D. A.; Han, Y., Atomically resolved imaging of radiation-sensitive metal-organic frameworks via electron ptychography. Nature Communications 2025, 16, 914 Chen, C.; Cao, L.; Liu, Y.; Li, Z.; Li, Z. H.; Zhou, G.; Zhang, D.; Huang, X.; Wang, Y.; Li, G.; Liu, L.; Yuan, Y. Y.; Zhang, Y.; Wang, Q.; Chen, Y.; Shi, Z.; Fang, Q.; Huang, Z.; Lai, Z.; Han, Y., Investigating a Seemingly Simple Imine-Linked Covalent Organic Framework Structure. Journal of the American Chemical Society 2024, 146, 35504-35512 Chen, C.; Meng, L.; Cao, L.; Zhang, D.; An, S.; Liu, L.; Wang, J.; Li, G.; Pan, T.; Shen, J.; Chen, Z.; Shi, Z.; Lai, Z.; Han, Y., Phase Engineering of Zirconium MOFs Enables Efficient Osmotic Energy Conversion: Structural Evolution Unveiled by Direct Imaging. Journal of the American Chemical Society 2024, 146, 11855-11865 Guanxing Li, Hui Zhang, Yu Han. Applications of Transmission Electron Microscopy in Phase Engineering of Nanomaterials. Chem. Rev., 2023, DOI: 10.1021/acs.chemrev.3c00364. Zhang, H.*; Li, G.; Zhang, J.; Zhang, D.; Chen, Z.; Liu, X.; Guo, P.; Zhu, Y.; Chen, C.; Liu, L.; Guo, X.; Han, Y.*, Three-dimensional inhomogeneity of zeolite structure and composition revealed by electron ptychography. Science 2023, 380 (6645), 633-638. Cheng, Q.; Li, G.; Yao, X.; Zheng, L.; Wang, J.; Emwas, A. H.; Castano, P.; Ruiz-Martinez, J.; Han, Y.*, Maximizing active Fe species in ZSM-5 zeolite using organic-template-free synthesis for efficient selective methane oxidation. J. Am. Chem. Soc. 2023, 145, 5888-5898. Shen, J.; Cai, Y.; Zhang, C.; Wei, W.; Chen, C.; Liu, L.; Yang, K.; Ma, Y.; Wang, Y.; Tseng, C. C.; Fu, J. H.; Dong, X.; Li, J.; Zhang, X. X.; Li, L. J.; Jiang, J.; Pinnau, I.; Tung, V.; Han, Y., Fast water transport and molecular sieving through ultrathin ordered conjugated-polymer-framework membranes. Nature Materials 2022, 21, 1183–1190 Dong, J.; Liu, L.; Tan, C.; Xu, Q.; Zhang, J.; Qiao, Z.; Chu, D.; Liu, Y.; Zhang, Q.; Jiang, J.; Han, Y.; Davis, A. P.; Cui, Y., Free-standing homochiral 2D monolayers by exfoliation of molecular crystals. Nature 2022, 602, 606-611. Yao, Q.; Liu, L.; Malola, S.; Ge, M.; Xu, H.; Wu, Z.; Chen, T.; Cao, Y.; Matus, M. F.; Pihlajamaki, A.; Han, Y.; Hakkinen, H.; Xie, J., Supercrystal engineering of atomically precise gold nanoparticles promoted by surface dynamics. Nature Chemistry 2022, 15, 230–239. Lei, Q.; Huang, L.; Yin, J.; Davaasuren, B.; Yuan, Y.; Dong, X.; Wu, Z. P.; Wang, X.; Yao, K. X.; Lu, X.; Han, Y., Structural evolution and strain generation of derived-Cu catalysts during CO2 electroreduction. Nat. Commun. 2022, 13 (1), 4857. Xie, Y.; Pan, T.; Lei, Q.; Chen, C.; Dong, X.; Yuan, Y.; Maksoud, W. A.; Zhao, L.; Cavallo, L.; Pinnau, I.; Han, Y., Efficient and simultaneous capture of iodine and methyl iodide achieved by a covalent organic framework. Nat. Commun. 2022, 13 (1), 2878. Yang, K.; Pan, T.; Dang, S.; Gan, Q.; Han, Y., Three-dimensional open architecture enabling salt-rejection solar evaporators with boosted water production efficiency. Nat. Commun. 2022, 13 (1), 6653. Zhang, Z.; Dong, X.; Yin, J.; Li, Z. G.; Li, X.; Zhang, D.; Pan, T.; Lei, Q.; Liu, X.; Xie, Y.; Shui, F.; Li, J.; Yi, M.; Yuan, J.; You, Z.; Zhang, L.; Chang, J.; Zhang, H.; Li, W.; Fang, Q.; Li, B.; Bu, X. H.; Han, Y., Chemically stable guanidinium covalent organic framework for the efficient capture of low- concentration iodine at high temperatures. J. Am. Chem. Soc. 2022, 144 (15), 6821-6829. Zhou, J.; Wei, N.; Zhang, D.; Wang, Y.; Li, J.; Zheng, X.; Wang, J.; Alsalloum, A. Y.; Liu, L.; Bakr, O. M.; Han, Y., Cryogenic focused ion beam enables atomic-resolution imaging of local structures in highly sensitive bulk crystals and devices. J. Am. Chem. Soc. 2022, 144 (7), 3182-3191. Lei, Q.; Zhu, H.; Song, K.; Wei, N.; Liu, L.; Zhang, D.; Yin, J.; Dong, X.; Yao, K.; Wang, N.; Li, X.; Davaasuren, B.; Wang, J.; Han, Y., Investigating the origin of enhanced C2+ selectivity in oxide-/hydroxide-derived copper electrodes during CO2 electroreduction. J. Am. Chem. Soc. 2020, 142, 4213-4222. Liu, L.; Chen, Z.; Wang, J.; Zhang, D.; Zhu, Y.; Ling, S.; Huang, K. W.; Belmabkhout, Y.; Adil, K.; Zhang, Y.; Slater, B.; Eddaoudi, M.; Han, Y., Imaging defects and their evolution in a metal-organic framework at sub-unit-cell resolution. Nat. Chem. 2019, 11, 622-628. Liu, L.; Wang, N.; Zhu, C.; Liu, X.; Zhu, Y.; Guo, P.; Alfilfil, L.; Dong, X.; Zhang, D.; Han, Y., Direct imaging of atomically dispersed molybdenum that enables location of aluminum in the framework of zeolite ZSM-5. Angew. Chem. 2019, 132, 829-835. Zhang, D.; Zhu, Y.; Liu, L.; Ying, X.; Hsiung, C. E.; Sougrat, R.; Li, K.; Han, Y., Atomic-resolution transmission electron microscopy of electron beam-sensitive crystalline materials. Science 2018, 359, 675-679. Zhu, Y.; Ciston, J.; Zheng, B.; Miao, X.; Czarnik, C.; Pan, Y.; Sougrat, R.; Lai, Z.; Hsiung, C. E.; Yao, K.; Pinnau, I.; Pan, M.; Han, Y., Unravelling surface and interfacial structures of a metal-organic framework by transmission electron microscopy. Nat. Mater. 2017, 16, 532-536. Chen, C.; AlAlouni, M. R.; Dong, X.; Cao, Z.; Cheng, Q.; Zheng, L.; Meng, L.; Guan, C.; Liu, L.; Abou-Hamad, E.; Wang, J.; Shi, Z.; Huang, K.-W.; Cavallo, L.; Han, Y., Highly active heterogeneous catalyst for ethylene dimerization prepared by selectively doping Ni on the surface of a zeolitic imidazolate framework, J. Am. Chem. Soc. 2021, 143, 7144–7153. Zhu, Y.; He, J.; Shang, C.; Miao, X.; Huang, J.; Liu, Z.; Chen, H.; Han, Y., Chiral gold nanowires with boerdijk-coxeter-bernal structure. J. Am. Chem. Soc. 2014, 136, 12746-12752. Jianfeng Huang, Yihan Zhu, Ming Lin, Qingxiao Wang, Lan Zhao, Yang Yang, Kexin Yao, and Yu Han*, “Site-specific Growth of Au-Pd Alloy Horns on Au Nanorods: a Platform for Highly Sensitive Monitoring of Catalytic Reactions by Surface Enhancement Raman Spectroscopy” J. Am. Chem. Soc., 135 (2013), 8552-8561. Yunfeng Zhao, Ke Xin Yao, Baiyang Teng, Tong Zhang, Yu Han*, “A Perfluorinated Covalent Triazine-based Framework for Highly Selective and Water-tolerant CO2 Capture”, Energy and Environmental Science, 6 (2013), 3684-3692.