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辽宁大学化学院研究生导师简介-郭放

辽宁大学 免费考研网/2016-04-28



郭放,女,1975年3月生,研究员,博士生导师。目前为辽宁大学第二梯队学术带头人,辽宁省“百千万人才工程”千人层次,辽宁省高等学校优秀青年学者。曾荣获辽宁大学振兴奖,多次辽宁省自然科学学术成果奖。



通讯地址:沈阳市崇山中路66号,辽宁大学化学院

电 话:**

电 邮:fguo@lnu.edu.cn



教育背景/学术经历

2008.12 - 今 辽宁大学化学系研究员,2011年聘为博士生导师

2007.04 -2008.7 英国卡迪夫大学化学院,助理研究员

2003.10–2007.4 英国卡迪夫大学化学院 博士

2000.09 -2003.9 辽宁大学 化学院 讲师

1997.09 -2000.7 中国协和医科大学、中国医学科学院药物研究所 硕士



主要研究方向

固态超分子化学及其晶体工程:(1)超分子、药物共晶分子的晶体生长、同质多晶、结构与性能关系研究;(2)“二次球”策略在超分子化学的应用; (3)超分子化学的固态合成;(4)有机化合物的粉末衍射结构测定。

研究成果

先后承担国家自然科学基金,辽宁省优秀人才青年学者资助计划、教育部回国留学人员基金等项目的研究工作。近几年,在J. Am. Chem. Soc.,Chem. Commun.,Cryst. Growth & Des.,J. Phys. Chem. C,Inorg. Chem., CrystEngComm, Supramol. Chem.,等国际期刊发表SCI论文50余篇。授权专利两项。

代表性研究论

1. H. Y. Guan, Z. Wang, A. Famulari, X. Wang, F. Guo*, J. Martí-Rujas*, Synthesis of Chelating Complexes through Solid-State Dehydrochlorination Reactions via Second-Sphere-Coordination Interaction with Metal Chlorides: A Combined Experimental?Molecular Modeling Study, Inorg. Chem., 2014, 53, 7438?7445. (IF =4.794)

2. H. L. Liu, Y. F. Xie, Z. G. Pan, A. Famulari, F. Guo*, Z. Zhou, J. Martí-Rujas*, Cyclic Interconversion among Molecular Salts via Neat Grinding and Related Photoluminescence Properties, Cryst. Growth Des., 2014, 14, 6528?6536. (IF = 4.558)

3. L. Li, F. Maddalena, M. Oliveros, M. Caironi, F. Guo*, J. Martí-Rujas*, A second sphere coordination adduct containing one-dimensional water/methanol channels: X-ray structures, thermal stability and single crystal impedance spectroscopy analysis,CrystEngComm, 2014, 16, 10888–10892. (IF = 3.879)

4. F. Guo*, H.D. Shao, Q. Yang, A. Famulari, J. Martí-Rujas*, Mechanochemical dehydrochlorination and chelation reaction in the solid state: from a molecular salt to a coordination complex, CrystEngComm, 2014, 16, 969-973. (IF = 3.879)

5. F. Guo*, M.Q. Zhang, A. Famulari, J. Martí-Rujas, Solid state transformations in stoichiometric hydrogen bonded molecular salts: ionic interconversion and dehydration processes, CrystEngComm, 2013, 15, 6237 - 6243(IF = 3.879).

6.L. Li, Y. Q. Fu, F. Guo*, J. Gao, J. Tong, Z.F. Zhou, Polymorphism and photoluminescence in a naphthalene-based ligand, and its supramolecular structures through second-sphere coordination with the [CoCl4]2- anion, RSC Adv., 2013, 3, 11594 - 11600. (IF = 3.708)

7.F. Guo*, H. C. Yu, L. Li, F. Xia, J. Tong, B. X. Wang, Halogen anion-directed helical host chain and the effect of halogen anions on the inclusion property, Supramol. Chem., 2013, 25, 173-179.

8.F. Guo,* L. Li, Y. N. Zhang, J. Tong, C. L. Song, F. Xia, W. S. Guo, Structure and inclusion behaviour of five supramolecular inclusion solids constructed from flexible organic layers with [Fe(CN)6]3– as pillars by second-sphere coordination, Supramol. Chem., 2012, 24, 415-423.

9. F. Guo*, M.Q. Zhang, N. Lu, H. Y. Guan, J. Tong, B.X. Wang, Co-crystal of [CuCl4]2- and L1 and its inclusion compounds with three different guests (L1 = N, N, N′, N′ - tetra-p-methoxybenzyl – ethylenediamine), CrystEngComm, 2011, 13, 6753-6758. (IF = 4.006).

10. F. Guo*, F. Xia, N. Lu, et al, Supramolecular inclusion of a pillared double-layered host by anion-directed second-sphere coordination, Supramol. Chem., 2010, 22, 548-553. (IF = 2.145)

11.F. Guo, J. Martí-Rujas, Z.G. Pan, K.D.M. Harris, Direct structural understanding of a topochemical solid state photopolymerization reaction, J. Phys. Chem. C, 2008, 112, 19793-11796. (IF = 4.814)

12.F. Guo, M. Casadesus, E.Y. Cheung, M.P. Coogan, K.D.M. Harris, On the spontaneous induction of chirality in the preparation of Werner’s complex cis-[CoBr(NH3) (en)2]Br2, Chem. Commun., 2006, 1854-1856. (IF = 6.378)

13.S.Y. Ahn, F. Guo, B.M. Kariuki, K.D.M. Harris, Abundant polymorphism in a system with multiple hydrogen-Bonding opportunities: oxalyl Dihydrazide, J. Am. Chem. Soc., 2006, 128, 8441-8452. (IF = 10.677)

14.F. Guo, E.Y. Cheung, K.D.M. Harris, V.R. Pedireddi, Contrasting solid-State structures of trithiocyanuric acid and cyanuric acid, Cryst. Growth & Des., 2006, 6, 846-848. (IF = 4.689)

15.F. Guo, K.D.M. Harris, Structural understanding of a molecular material that is accessed only by a solid-State desolvation process: The Scope of Modern Powder X-ray Diffraction Techniques, J. Am. Chem. Soc., 2005, 127, 7314-7315. (IF = 10.677)



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