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个人简介
马天琼,特聘研究员,博士生导师,国家级青年人才计划(海外)入选者。2010年本科毕业于兰州大学物理科学与技术学院,2018年博士毕业于兰州大学化学化工学院(导师:王为教授)。2018-2019年在北京大学化学与分子工程学院从事博士后研究(“博雅”博士后,导师:孙俊良教授),2019-2023年在加州大学伯克利分校从事博士后研究(导师:Omar M. Yaghi教授),2023-2024年获聘项目研究员(Project Scientist)。2024年3月加入南京大学化学化工学院。目前主要从事网络化学(Reticular Chemistry)方面的研究,包括共价有机框架、编织分子、聚索烃等材料的设计合成、晶体生长、结构解析和应用研究等。在Science、Nature. Synth.、Nature. Commun.、J. Am. Chem. Soc.、Angew. Chem. Int. Ed.等期刊上发表代表性论文。合作撰写英文专著1部,获中国授权专利3项(第二发明人)。作为主要完成人之一,获得2022年甘肃省自然科学奖特等奖。 课题组诚招本科、硕士和博士研究生,长期招聘博士后、科研助理,期待具有无机化学、有机化学、材料化学、配位化学、晶体工程等研究兴趣和背景的青年才俊加入! 展示全部
工作经历
2024-03 至今南京大学,特聘研究员 2023-06 至 2024-01 加州大学伯克利分校,项目研究员 2019-06 至 2023-05 加州大学伯克利分校,博士后 2019-01 至 2019-05 北京大学,化学与分子工程学院,博士后 2018-08 至 2018-11 北京大学, 化学与分子工程学院,助理研究员 2010-08 至 2011-06 甘肃省榆中县第二中学,研究生支教团支教 展示全部
研究方向
课题组主要致力于新型有机多孔材料的相关研究,具体研究内容包括但不限于: 1. 新型有机多孔材料(COFs、molecular weaving、cages、polycatenane等)的设计合成; 2. 共价有机晶体的生长与结构解析、成晶机理、构效关系等的研究; 3. 功能性有机多孔材料的性能开发和应用拓展,包括吸附分离(例如CO2捕获)、半导体性能的开发、智能材料的特殊力学性能研究、催化应用等。 学术成果
代表性论文: [1] T. Ma, E. A. Kapustin, S. X. Yin, L. Liang, Z. Zhou, J. Niu, L.-H. Li., Y. Wang, J. Su, J. Li, X. Wang, W. D. Wang, W. Wang*, J. Sun*, O. M. Yaghi*, Single-crystal X-ray diffraction structures of covalent organic frameworks. Science, 2018, 361, 48. (Highlighted by Science and C&EN) [2] T. Ma, Y. Zhou, C. S. Diercks, J. Kwon, F. Gándara, H. Lyu, N. Hanikel, P. Pena-Sánchez, Y. Liu, N. J. Diercks, R. O. Ritchie, D. M. Proserpio, O. Terasaki, O. M. Yaghi*, Catenanated covalent organic frameworks constructed from polyhedra. Nat. Synth. 2023, 2, 286. (Highlighted by C&EN et.al) [3] C. Gropp, T. Ma, N. Hanikel, O. M. Yaghi*, Design of higher valency in covalent organic frameworks. Science, 2020, 370, eabd6406. [4] T. Ma, L. Wei, L. Liang, S. Yin, L. Xu, J. Niu, H. Xue, X. Wang, J. Sun*, Y.-B. Zhang*, W. Wang*, Diverse crystal size effects in covalent organic frameworks. Nat. Commun. 2020, 11, 6128. [5] T. Ma, J. Li, J. Niu, L. Zhang, A. Etman, C. Lin, D. Shi, P. Chen, L.-H. Li, X. Du, J. Sun*, W. Wang*, Observation of interpenetration isomerism in covalent organic frameworks. J. Am. Chem. Soc. 2018, 140, 6763. [6] L. Liang, Y. Qiu, W. D. Wang, J. Han, Y. Luo, W. Yu, G.-L. Yin, Z.-P. Wang, L. Zhang, J. Ni, J. Niu, J. Sun*, T. Ma*, Wei Wang*, Non-interpenetrated single-crystal covalent organic frameworks. Angew. Chem. In. Ed. 2020, 132, 18147. (hot paper) [7] X. Han, T. Ma, B. L Nannenga, X. Yao, S. E. Neumann, P. Kumar, J. Kwon, Z. Rong, K. Wang, Y. Zhang, J. A.R. Navarro, R. O. Ritchie, Y. Cui*, O. M. Yaghi*. Molecular weaving of chicken-wire covalent organic frameworks.Chem, 2023, 9, 2509. (cover paper) [8] Y. Zhang*, L. Luo, J. Ge, S. Yan, Y. Peng, Y. Liu, J. Liu, C. Liu*, T. Ma*, H. Luo, “On water” direct organocatalytic cyanoarylmethylation of isatins for the diastereoselective synthesis of 3-hydroxy-3-cyanomethyl oxindoles. J. Org. Chem. 2019, 84, 4000. 其他论文: [9] X. Han, Z. Zhou, K. Wang, Z. Zheng, S. E. Neumann, H. Zhang, T. Ma, O. M. Yaghi*. Crystalline polyphenylene covalent organic frameworks.J. Am. Chem. Soc. 2024, 146, 89. [10] Z. Zheng, H. Nguyen, N. Hanikel, K.-Y. Li, Z. Zhou, T. Ma, O. M. Yaghi*, High-yield, green, and scalable production methods of MOF-303 for water harvesting from desert air. Nat. Protoc. 2023, 18, 136. [11] J. Li, C. Lin, T. Ma, J. Sun*. Atomic-resolution structures from polycrystalline covalent organic frameworks with enhanced cryo-cRED. Nat. Commun.2022, 13, 4016. [12] X. Li, Y. Tian, L. Shen, Z. Qu, T. Ma, F. Sun, X. Liu, C. Zhang, J. Shen, X. Li. L. Gao, S. Xiao, T. Liu, Y. Liu, Y. Lu*, Electrolyte interphase built from anionic covalent organic frameworks for lithium dendrite suppression. Adv. Funct. Mater., 2021, 31, 2009718. [13] L. Xu, T. Ma, Y. Shen, Y. Wang, L. Han*, W. Chaittisilp, T. Yokoi, J. Sun*, T. Wakihara, T. Okubo*, Rational manipulation of stacking arrangements in three-dimensional zeolites built from two-dimensional zeolitic nanosheets. Angew. Chem. In. Ed. 2020, 59, 19934. (hot paper) [14] H.-S. Xu, Y. Luo, X. Li, P. Z. See, Z. Chen, T. Ma, L. Liang, K. Leng, I. Abdelwahab, L. Wang, R. Li, X. Shi, Y. Zhou, X. F. Lu, X. Zhao, C. Liu, J. Sun*, K. P. Loh*, Single crystal of a one-dimensional metallo-covalent organic framework. Nat. Commun. 2020, 11, 1434. [15] C. Gao, J. Li, S. Yin, G. Lin, T. Ma, Y. Meng, J. Sun*, C. Wang*, Isostructural 3D Covalent Organic Frameworks. Angew. Chem. In. Ed. 2019, 58, 9770. [16] D. Shi, L. Xu*, P. Chen, T. Ma, C. Lin, X. Wang, D. Xu, J. Sun*, Hydroxyl free radical route to the stable siliceous Ti-UTL with extra-large pores for oxidative desulfurization. Chem. Commun.2019, 55, 1390. [17] C. Lin, F. Pan, J. Li, Y. Chen, D. Shi, T. Ma, Y. Yang, X. Du, W. Wang, F. Liao, J. Lin, T. Yang, J. Sun*, An open-framework aluminophosphite with face-sharing AlO6 octahedra dimers and extra-large 14-ring channels. Cryst. Growth & Des. 2018, 18, 1267. [18] F. Li, Y. Liu, T. Ma, D. Xu, X. Li, G. Gong*, Catalysis of the hydrodechlorination of 4-chlorophenol and the reduction of 4-nitrophenol by Pd/Fe3O4@C. New J. Chem. 2017, 41, 4014. 合著专著: L. Wang, X. Li, T. Ma, F. Li, Y. Liu, G. Gong, InTech Open. Organochlorine, Chapter: Application of Heterogeneous Catalysts in Dechlorination. ISBN: 978-953-51-6738-9 授权专利: [1] 王为,马天琼,一种共价有机框架材料单晶的制备方法,2016104677994. [2] 王为,马天琼,一种共价有机框架材料不同尺寸晶粒的可控制备方法,2016104678003. [3] 王为,马天琼,一种新型有机碳化硅材料LZU111及其合成方法,2016104678056. 课程名称、上课时间地点
教学大纲、考试要求
教学资源(上课讲义、参考资料等)
课题组风采
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