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纳米光电材料研究所    
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丁雪华 ▍ DING Xue-Hua
 添加时间:2018/08/31 发布: 管理员
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丁雪华,副研究员。


联系方式:

办公地点:南京市新模范马路5号南京工业大学丁家桥校区科技创新大楼五楼

Email: iamxhding@njtech.edu.cn


个人概况:

丁雪华博士于20157月获得南京邮电大学博士学位,随后在南京工业大学三昇体育研究院从事博士后研究。2017年正式加入南京工业大学三昇体育研究院从事教学科研工作。


研究方向:

氢键型/卤键型多组分晶体材料设计、合成及其在光电领域中的应用


主要学术成绩:

主要从事晶体工程和超分子化学相关领域的研究工作,在超分子自组装和多组分光电功能晶体材料的设计与合等方面取得了一系列的研究成果,在Coord. Chem. Rev.J. Phys. Chem. CInorg. Chem. Front.CrystEngComm等国际期刊上已发表SCI论文22篇。


代表性论文:

1. Ding, X. H.; Ou, C. J.; Wang, S.; Xie, L. H.; Lin, J. Y.; Wang, J. P.; Huang, W., Co-crystallization of 1,3,5-trifluoro-2,4,6-triiodobenzene (1,3,5-TFTIB) with a variety of Lewis bases through halogen-bonding interactions. CrystEngComm 2017, 19, 5504-5521.


2. Ou, C. J.;# Ding, X. H.; # Li, Y. X.; Zhu, C.; Yu, M. N.; Xie, L. H.; Lin, J. Y.; Xu, C. X.; Huang, W., Conformational Effect of Polymorphic Terfluorene on Photophysics, Crystal Morphologies, and Lasing Behaviors. J Phys. Chem. C 2017, 121, 14803-14810. (Co-first Author)


3. Ding, X. H.; Wang, S.; Li, Y. H.; Huang, W., Inorganic anion-assisted supramolecular assemblies of bent dipyridines: effects of anionic geometries on the hydrogen-bonding networks. Inorg. Chem. Front. 2015, 2, 263-272.


4. Ding, X. H.; Cui, L. F.; Li, Y. H.; Wang, S.; Huang, W., Proton-transfer Supramolecular Salts Resulted from 3, 5-Dinitrobenzoic Acid and Aminomethyl Pyridine. New J. Chem. 2012, 36, 1884-1890.


5. Ding, X. H.; Li, Y. H.; Wang, S.; Li, X. A.; Huang, W., Proton-transfer supramolecular salts based on proton sponge 2,2'-dipyridylamine. J. Mol. Struct. 2013, 1051, 124-131.


6. Ding, X. H.; Li, Y. H.; Wang, S.; Huang, W., Proton-transfer Supramolecular Salts of D-/L-tartaric Acid and 1-(2-Pyrimidyl) piperazine. J. Mol. Struct. 2014, 1062, 61–67.


7. Ding, X. H.; Wang, S.; Li, Y. H.; Huang, W., Tetrahedral oxyanions-assisted supramolecular assemblies of pyridine-based tectons into hydrogen-bonding networks. J. Mol. Struct. 2015, 1079, 266-273.


8. Wang, S.; Ding, X. H.; Li, Y. H.; Huang, W., Dicyanometalate chemistry: a type of versatile building blocks for the construction of cyanide-bridged molecular architectures. Coord. Chem. Rev. 2012, 256, 439–464.


9. Wang, S.; Ding, X. H.; Zuo, J. L.; You, X. Z.; Huang, W., Tricyanometalate molecular chemistry: A type of versatile building blocks for the construction of cyano-bridged molecular architectures. Coord. Chem. Rev. 2011, 255, 1713-1732.


10. Ding, X. H.; Wang, S.; He, W. R.; Huang, W., 3-Aminobenzonitrile-3,5-dinitrobenzoic acid (1/1). ActaCryst. Sect. E 2011, 67, o2833.


11. Wang, S.; Ding, X. H.; Li, Y. H.; Huang, W., Supramolecular assemblies through host–guest interactions of 18-crown-6 with ammonium salts: geometric effects of amine groups on the hydrogen-bonding architectures. Supramol. Chem. 2015, 27, 213-223.


12. Wang, S.; Ding, X. H.; Li, Y. H.; Huang, W., Effects of strong hydrogen bonds and weak intermolecular interactions on supramolecular assemblies of 4-fluorobenzylamine. J. Mol. Struct. 2015, 1091, 98-108.


13. Li, Y. H.; Ding, X. H.; Zhang, Y.; He, W. R.; Huang, W., Synthesis, characterization, and catalytic behavior of a PSiP pincer-type ruthenium(II) complex. Inorg. Chem. Commun. 2012, 15, 194-197.


14. Li, Y. H.; He, W. R.; Ding, X. H.; Wang, S.; Cui, L. F.; Huang, W., Cyanide-bridged assemblies constructed from capped tetracyanometalate building blocks M-A(ligand)(CN)(4) (1-2/-) (M-A =Fe or Cr). Coord. Chem. Rev. 2012, 256, 2795-2815.


15. Li, Y. H.; Zhang, Y.; Ding, X. H., Synthesis, structure, and catalytic behavior of a PSiP pincer-type iridium(III) complex. Inorg. Chem. Commun. 2011, 14, 1306-1310.


16. Ou, C. J.; Zhu, C.; Ding, X. H.; Yang, L.; Lin, J. Y.; Xie, L. H.; Qian, Y.; Xu, C. X.; Zhao, J. F.; Huang, W., Dimerization effect of fluorene-based semiconductors on conformational planarization for microcrystal lasing. J. Mater. Chem. C 2017, 5, 5345-5355.


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