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副教授
孔祥华
发布时间:2018-11-17 阅读次数: 9458
姓 名:
孔祥华
职 称:
副教授,硕导
职 务:
所属系:
化学系
邮 箱:
kongxh@hfut.edu.cn
电 话:

个人简历

1999.9-2003.6,山东大学,化学与化工学院,学士。
2003.9-2008.6,中国科学院化学研究所,分子纳米结构与纳米技术院重点实验室,博士。
2008.7-2010.8,德国莱布尼茨固态与材料研究所,综合纳米科学分所,博士后。
2012.7-2013.8,美国德克萨斯州立大学奥斯汀分校,机械工程系,博士后。
2013.12—至今,合肥工业大学,化学工程学院,副研究员(副教授)。

主要研究领域、方向

低维纳米材料的可控制备、结构表征、物性测量及其应用研究
1, 化学气相沉积法薄膜材料的可控制备与可控掺杂,包括大面积单层/多层石墨烯、其它二维晶体材料及其异质复合结构
2, 二维晶体材料的快速检测、无损转移及其在透明导电薄膜、传感器等领域的应用

研究成果(代表性成果)

目前承担科研项目

获奖及专利情况

著作论文(代表作)

(1) C. W. Magnuson,+ X. H. Kong+, H. X. Ji, C. Tan, H. F. Li, R. D. Piner, C. A. Ventrice, Jr., and R. S. Ruoff*, Copper oxide as a ‘self-cleaning’ substrate for graphene growth, J. Mater. Res., 2014, 29, 403. (+co-first author)
(2) H. X. Ji, D. P. Sellan, M. T. Pettes, X. H. kong, J. Y. Ji, L. Shi, R. S. Ruoff*, Enhanced thermal conductivity of phase change materials with ultrathin-graphite foams for thermal energy storage, Energy Environ. Sci., 2014. DOI: 10.1039/C3EE42573H.
(3) X. H. Kong, H. X. Ji, R. D. Piner, H. F. Li, C. W. Magnuson, C. Tan, A. Ismach, H. Chou, R. S. Ruoff*, Non-destructive and rapid evaluation of large-area chemical vapor deposition graphene by dark field optical microscopy, Appl. Phys. Lett., 2013, 103, 043119.
(4) R. Piner, H. F. Li*, X. H. Kong, L. Tao, I. N. Kholmanov, H. X. Ji, W. H. Lee, J. W. Suk, J. Ye, Y. F. Hao, S. S. Chen, C. W. Magnuson, A. F. Ismach, D. Akinwande, R. S. Ruoff*, Graphene synthesis via magnetic inductive heating of copper substrates, ACS Nano 2013, 7,7495.
(5) H. Schmidt*, X. H. Kong*, C. Deneke, O. G. Schmidt, Dielectrophoretic manipulation of rolled-up microtubes by surface acoustic waves, Proceedings of the 2011 6th IEEE International Conference, 2012, 1204. (*corresponding author)
(6) X. H. Kong*, C. Deneke*, H. Schmidt*, D. J. Thurmer, H. X. Ji, M. Bauer, O. G. Schmidt, Surface acoustic wave mediated dielectrophoretic alignment of rolled-up microtubes in microfluidic systems, Appl. Phys. Lett., 2010, 96, 134105.
(7) X. H. Kong, S. B. Lei, Y. L. Yang, K. Deng, G. C. Qi, C. Wang*, Identification of molecular flipping of an asymmetric tris(phthalocyaninato) lutetium triple-decker complex by scanning tunneling microscopy/spectroscopy, Nano Rearch, 2009, 2, 235.
(8) X. H. Kong, K. Deng, Y. L. Yang, S. B. Lei, C. Wang*, Effect of electrostatic interactions on metallophthalocyanine single molecular arrays with n-octadecyl mercaptan templates, J. Nanosci. Nanotechno., 2009, 9,1152.
(9) X. H. Kong, Y. L. Yang, S. B. Lei, C. Wang*, On the topography multiplicity of non-planar titanyl (IV) phthalocyanine molecules and the STM imaging mechanism, Surf. Sci. 2008, 602, 684.
(10) X. H. Kong, K. Deng, Y. L. Yang, Q. D. Zeng, C. Wang*, H-bond switching mediated multiple flexibility in supramolecular host-guest architectures, J. Phys. Chem. C, 2007, 111,17382.
(11) X. H. Kong, K. Deng, Y. L. Yang, Q. D. Zeng, C. Wang*, Effect of thermal annealing on hydrogen bond configurations of host lattice revealed in VOPc/TCDB host-guest architectures, J. Phys. Chem. C, 2007, 111,9235.
(12) X. H. Kong, M. Wang, S. B. Lei, Y. L. Yang, C. Wang*, Electronic sensory behavior of titanyl phthalocyanine revealed by scanning tunneling spectroscopy and cyclic voltammetry methods, J. Mater. Chem. 2006, 16, 4265.


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