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个人简介

2004年本科毕业于江苏师范大学,获得化学学士学位;2010年博士毕业于中国科学院福建物质结构研究所,获得理学博士学位,导师卢灿忠研究员;随后留所工作并任助理研究员;2012年2月赴德国波鸿鲁尔大学 (Ruhr University Bochum)Prof. Roland A. Fischer 课题组从事博士后工作,进行具有高效催化性能的缺陷金属 - 有机骨架 ( DEMOFs )的设计与合成,及其在催化机理和应用方面的研究。2014年08月加入南京工业大学先进材料研究院。目前,指导外籍(尼泊尔)博士后一名,在读博士2名 (徐文龙,杨丹丹),硕士若干名。

研究领域

房贞兰教授的研究方向主要集中在基于金属 - 有机骨架 (MOFs )的能源材料的设计合成并开发其在工业生产中的应用,主要研究内容包括以下几个方面: a) 光催化剂材料; b) 其它新型高效催化剂以及催化剂载体材料; c) 光解水制氢的催化电极, 超级电容器的电极; d)用于气体分离和存储等方面的MOFs材料; e)可作为荧光探针并用于疾病监测和污水处理等领域的智能柔性MOFs,以及可作为活性层在新型白光LED元器件等方面有潜在应用的其它发光MOFs材料

近期论文

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Fang, Z.L.*; Bueken, B.; De Vos, D. E.; Fischer, R. A.* Defect-Engineered Metal–Organic Frameworks. Angew. Chem. Int. Ed. 2015, 54, 7234-7254. Yang, D. D.; Xu, W. L.; Cao, X. W.; Zheng, S. J.; He, J. G.; Ju, Q.; Fang, Z.L.*; Huang, W.* Two Silver Coordination Network Compounds with Colorful Photoluminescence. Inorg. Chem. 2016, 55, 7954-7961. Yang, D.; Tian, Y.; Xu, W.; Cao, X.; Zheng, S.; Ju, Q.; Huang, W.*; Fang, Z.L.* A Series of Lanthanide-Based Metal–Organic Frameworks: Synthesis, Structures, and Multicolor Tuning of Single Component. Inorg. Chem. 2017, 56, 2345-2353. Wang, M.; Tian, Y.; Zhao, F.; Li, R.; You, W.; Fang, Z.L.; Chen, X.; Huang, W.; Ju, Q. Alleviating the emitter concentration effect on upconversion nanoparticles via an inert shell. J. Mater. Chem. C 2017, 5, 1537-1543. Fang, Z.L.; Durholt, J. P.; Kauer, M.; Zhang, W. H.; Lochenie, C.; Jee, B.; Albada, B.; Metzler-Nolte, N.; Poppl, A.; Weber, B.; Muhler, M.; Wang, Y. M.; Schmid, R.; Fischer, R. A. Structural Complexity in Metal-Organic Frameworks: Simultaneous Modification of Open Metal Sites and Hierarchical Porosity by Systematic Doping with Defective Linkers. J. Am. Chem. Soc. 2014, 136, 9627-9636. Fang, Z.L.; He, J. G.; Ju, Q. A.; Wu, X. Y.; Lu, C. Z. Coordination polymer based on cyano: Synthesis, crystal structure, and fluorescence. J. Solid. State. Chem. 2010, 183, 1615-1619. Fang, Z.L.; He, J. G.; Yu, R. M.; Wu, X. Y.; Lu, C. Z. One novel complex obtained through copper-mediated conversion of 2,5-bis (3-pyridyl)-1,3,4-oxadiazole: structure, in situ formation of ligand, and luminescence properties. CrystEngcomm 2011, 13, 6243-6250. Fang, Z.L.; He, J. G.; Zhang, Q. S.; Zhang, Q. K.; Wu, X. Y.; Yu, R. M.; Lu, C. Z. PH-Controlled Construction of Cu (I) Coordination Polymers: In Situ Transformation of Ligand, Network Topologies, and Luminescence and UV-vis-NIR Absorption Properties. Inorg. Chem. 2011, 50, 11403-11411. Fang, Z.L.; Yang, W. B.; He, J. G.; Ding, K. N.; Wu, X. Y.; Zhang, Q. S.; Yu, R. M.; Lu, C. Z. Solvothermal synthesis of two new coordination polymers: in situ heterocycle conversion and N-alkylation, network topologies and luminescence properties. CrystEngcomm 2012, 14, 4794-4800. Fang, Z.L.; Yu, R. M.; He, J. G.; Zhang, Q. S.; Zhao, Z. G.; Lu, C. Z. Structural, Luminescent, and Magnetic Properties of Three Novel Three-Dimensional Metal-Organic Frameworks Based on Hexadentate N,N '-bis (4-picolinoyl)hydrazine. Inorg. Chem. 2009, 48, 7691-7697. Fang, Z.L.; Yu, R. M.; Wu, X. Y.; Huang, J. S.; Lu, C. Z. Microporous Metal-Organic Frameworks: Structures, in Situ Formation of Ligand, and Crystal-to-Crystal Transformations. Cryst. Growth. Des. 2011, 11, 2546-2552. Fang, Z.L.; Yu, R. M.; Zhang, J.; Lu, C. Z. Novel ligands and complexes in situ generated from the copper-mediated conversions of 2,5-bis (2-hydroxyphenyl)-1,3,4-oxadiazole: structures and magnetic properties. CrystEngcomm 2011, 13, 4032-4038. Fang, Z.L.; Wu, X.-Y.; Yu, R.-M.; Lu, C.-Z. A microporous cationic metal-organic framework constructed from metallamacrocycle-based nanocages: structures and luminescence properties. CrystEngcomm 2014, 16, 8769-8776. Li, X. J.; Cai, Y. Z.; Fang, Z.L.; Wu, L. J.; Wei, B.; Lin, S. Three Two-Folded Interpenetrating 3D Metal-Organic Frameworks Consisting of Dinuclear Metal Units: Syntheses, Structures, and Magnetic Properties. Cryst. Growth. Des. 2011, 11, 4517-4524. Liu, Y.; Zhao, Z. G.; Fang, Z.L.; Yu, R. M.; Lu, C. Z. A 2D Cu (I) triazolate coordination polymer: Synthesis and characterization of (Cu4Br4 (C8H8N4) (2))center dot H2O. Inorg. Chem. Commun. 2009, 12, 599-601.

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