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个人简介

中国科学院院士,南开大学教授。2002年获国家自然科学基金委杰出青年基金资助,2004年被评为“教育部领军人才项目”特聘教授。2017年评为首批天津市杰出人才。2021年当选中国科学院院士。长期从事功能配合物化学研究,在配位聚合物的功能导向构筑、结构调控及性能研究等方面取得了系统成果,在J. Am. Chem. Soc.、Angew. Chem. Int. Ed.、Adv. Mater.、Nat. Commun.等期刊发表学术论文600余篇;主编《配位聚合物化学》专著一部,副主编《配位化学》教材一部,参编其他专著与教材6部。以第一完成人获2014年度国家自然科学二等奖、2018年度天津市自然科学特等奖、2002及2011年度天津市自然科学一等奖等奖项。

研究领域

光学材料 磁性材料 能源材料 气体吸附与分离研究 功能配位化学

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

Enhanced gas uptake in a microporous metal-organic frame-work via a sorbate induced-fit mechanism Yu, M. H., Space, B., Franz, M. D., Zhou, W., He, C., Li, L., Krishna, R., Chang Z., Li, W., Hu, T. L.*, Bu, X. H.*J. Am. Chem. Soc.2019. DOI: 10.1021/jacs.9b07807 Engineering Donor-acceptor Heterostructure Crystals for Photonic Logic Computation. Liu, X. T., Wang, K., Chang Z.*, Zhang, Y. H., Xu, J., Zhao, Y. S., Bu, X. H.*Angew. Chem. Int. Ed.2019. DOI: 10.1002/anie.201906278. A Giant Dy₇₆ Cluster: A New Fused Bi-Nanopillar Structural Model in Lanthanide Clusters. Li, X. Y., Su, H. F., Li, Q. W., Feng, R., Bai, H. Y., Chen, H. Y., Xu, J., Bu, X. H.*Angew. Chem. Int. Ed.2019.DOI:10.1002/anie.201903817. Nitrogen-Doped Wrinkled Carbon Foils Derived from MOF Nanosheets for Superior Sodium Storage Kong, L., Zhu, J., Shuang, W., Bu, X. H. (2018).Advanced Energy Materials,8(25), 1801515. Thermal Instability Induced Oriented 2D Pores for Enhanced Sodium Storage Kong, L., Xie, C. C., Gu, H., Wang, C. P., Zhou, X., Liu, J., ... Bu, X. H. (2018).Small,14(21), 1800639. Rational Construction of Highly Tunable Donor–Acceptor Materials Based on a Crystalline Host–Guest Platform Zhang, D. S., Gao, Q., Chang, Z., Liu, X. T., Zhao, B., Xuan, Z. H., ... Bu, X. H. (2018).Advanced Materials,30(50), 1804715. A Niccolite Structural Multiferroic Metal–Organic Framework Possessing Four Different Types of Bistability in Response to Dielectric and Magnetic Modulation Zhao, J. P., Xu, J., Han, S. D., Wang, Q. L., Bu, X. H. (2017).Advanced Materials,29(23), 1606966. Host–Guest Engineering of Coordination Polymers for Highly Tunable Luminophores Based on Charge Transfer Emissions Zhao, B., Li, N., Wang, X., Chang, Z., Bu, X. H. (2017).ACS applied materials interfaces,9(3), 2662-2668. Proton-conductive metal-organic frameworks: Recent advances and perspectives Li, A. L., Gao, Q., Xu, J., Bu, X. H. (2017).Coordination Chemistry Reviews,344, 54-82. Yolk–Shell MnO@ZnMn2O4/N–C Nanorods Derived from α‐MnO2/ZIF‐8 as Anode Materials for Lithium Ion Batteries Zhong, M., Yang, D., Xie, C., Zhang, Z., Zhou, Z., Bu, X. H. (2016).Small,12(40), 5564-5571. A Rigid Nested Metal-Organic Framework Featuring a Thermoresponsive Gating Effect Dominated by Counterions Q. Gao, X.-L. Zhao,Z. Chang, J. Xu and X.-H. Bu, Dalton Trans, 2016, 45: 6830-6833. Structure-modulated crystalline covalent organic frameworks as high-rate cathodes for Li-ion batteries G.-R. Li, C.-C.Xie, Z.-R. Shen, Z. Chang and X.-H. Bu, Dalton Trans., 2016, 45: 7866-7874. Flexible Metal–Organic Frameworks: Recent Advances and Potential Applications Chang, Z., Yang, D. H., Xu, J., Hu, T. L., Bu, X. H. (2015). Advanced Materials, 27(36), 5432-5441. Crystalline Capsules: Metal–Organic Frameworks Locked by Size‐Matching Ligand Bolts Wang, H., Xu, J., Zhang, D. S., Chen, Q., Wen, R. M., Chang, Z., Bu, X. H. (2015). Angewandte Chemie International Edition, 54(20), 5966-5970. Hydro(solvo)thermal synthetic strategy towards azido/formato-mediated molecular magnetic materials Han, S. D., Zhao, J. P., Liu, S. J., Bu, X. H. (2015). Coordination Chemistry Reviews, 289, 32-48. A three-dimensional metal–organic framework for selective sensing of nitroaromatic compounds Tian, D., Chen, R. Y., Xu, J., Li, Y. W., Bu, X. H. APL materials, 2014, 2(12): 124111. A Mixed Molecular Building Block Strategy for the Design of Nested Polyhedron Metal–Organic Frameworks Tian, D., Chen, Q., Li, Y., Zhang, Y. H., Chang, Z., Bu, X. H. Angewandte Chemie International Edition, 2014, 53(3): 837-841. A luminescent metal–organic framework demonstrating ideal detection ability for nitroaromatic explosives Tian, D., Li, Y., Chen, R. Y., Chang, Z., Wang, G. Y., Bu, X. H. Journal of Materials Chemistry A, 2014 2(5):1465-1470. A Controllable Gate Effect in Cobalt(II) Organic Frameworks by Reversible Structure Transformations Chen, Q., Chang, Z., Song, W. C., Song, H., Song, H. B., Hu, T. L., Bu, X. H. (2013).Angewandte Chemie International Edition,52(44), 11550-11553. A Cu(I) metal–organic framework with 4-fold helical channels for sensing anions Chen, Y. Q., Li, G. R., Chang, Z., Qu, Y. K., Zhang, Y. H., Bu, X. H. (2013).Chemical Science,4(9), 3678-3682. Microporous metal–organic frameworks with open metal sites as sorbents for selective gas adsorption and fluorescence sensors for metal ions Li, Y. W., Li, J. R., Wang, L. F., Zhou, B. Y., Chen, Q., Bu, X. H. (2013).Journal of Materials Chemistry A,1(3), 495-499.

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