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标题: 【胡俊华】郑州大学材料科学与工程学院研究生导师介绍 [打印本页]

作者: 信息发布    时间: 2017-3-13 18:33
标题: 【胡俊华】郑州大学材料科学与工程学院研究生导师介绍

  个人概况:

  姓名:胡俊华  性别:男  出生年月:1979年07月  籍贯:河南省扶沟县

  最高学历:博士  从事专业:材料科学与工程

  职务:低碳环保材料智能设计国际联合研究中心常务副主任

  职称:直聘教授/全额资助博士生导师

  社会兼职:《Inter.J. Nanomanufacturing 》客座编辑;《硅酸盐通报》编辑;教育部学位中心论文函评专家。

  联系方式:电话:15138663091 E-mail:hujh@zzu.edu.cn

  通讯地址:郑州市科学大道100号,郑州大学材料科学与工程学院(邮政编码:450001)

  个人简历:

  1.1999年9月~2003年7月毕业于郑州大学材料科学与工程学院材料科学与工程专业,获工学学士学位。

  2.2003年9月~2006年7月毕业于郑州大学材料加工专业,获工学硕士学位。

  3.2006年10月~2009年9月,受日本文部科学省国费奖学金资助赴日本国立静冈大学工学部学习,获工学博士学位。

  4.2009年10月起,郑州大学材料科学与工程学院材料科学系工作。

  教学情况:

  承担研究生、本科生的金属材料学、新能源材料课程的讲授。

  研究领域:

  1.锂离子电池材料的研究和设计

  2.等离子溅射技术和TCO材料的能带工程

  3.纳米材料的光电过程及能源领域应用

  4.金属硅化半导体材料的生长和性能研究

  5.核电用先进金属材料的设计与延寿

  主持结项及在研项目如下:

  1. 国家自然科学基金面上项目,51571182,辐照条件下锆基非晶薄膜的结构演变及服役性能,2016/1-2019/12,71万,在研,主持

  2. 国家自然科学基金青年项目,51001091,MnSi1.7薄膜的多尺度构建及电声输运性能研究,2011/1-2013/12,20万,结题,主持

  3. 河南省财政厅,低碳环保材料设计,2016/1-2017/12,200万,在研,主持

  4. 郑州大学优秀青年发展基金,1421320047,辐照条件下锆基非晶涂层的服役性能及结构演变的同步辐射研究,2014/9-2017/8,30万,在研,主持

  5. 科技厅,122300410081,超薄Si/FeSi2/Si太阳能电池界面、缺陷与光伏转换效率的关联,2012/1-2014/9,10万,结题,主持

  6. 教育部留学归国人员科研启动:微纳米柱状晶Mg2Si热电材料

  7. 人社部留学归国人员优先资助:环境友好型热电材料

  另主持河南省教育厅、郑州市人社局、河南省工信厅和企业横向10项。

  基于国家低碳环保材料智能设计国际联合研究中心,与“千人计划”邵国胜教授、M.J.Thwaites( University of Southampton)共同培养研究生。成绩优异的可送到国外知名学校进一步深造。近三年内指导研究生获国奖6人,申请CSC出国6人。实验室具有充足的纳米材料、薄膜材料制造设备和材料物理化学分析测试手段,欢迎具有材料、物理、化学背景的广大同学交流、参与。

  个人兴趣:书画、篆刻、羽毛球

  主要荣誉:

  日本文部科学省国费奖学金

  河南省自然科学论文一等奖

  成果清单:

  发表论文:

  1. Gao, H., Zhang, P., Hu, J., Pan, J., Fan, J., & Shao, G. (2017). One-dimensional Z-scheme TiO2/WO3/Pt heterostructures for enhanced hydrogen generation. Applied Surface Science, 391, 211-217.

  2. Mao, J., Ma, M., Liu, P., Hu, J., Shao, G., Battaglia, V., ... & Liu, G. (2016). The effect of cobalt doping on the morphology and electrochemical performance of high-voltage spinel LiNi 0.5 Mn 1.5 O 4 cathode material.Solid State Ionics, 292, 70-74.

  3. Hu, J., Wang, L., Zhang, P., Liang, C., & Shao, G. (2016). Construction of solid-state Z-scheme carbon-modified TiO2/WO3 nanofibers with enhanced photocatalytic hydrogen production. Journal of Power Sources, 328, 28-36.

  4. Zhang, C., Song, A., Yuan, P., Wang, Q., Wang, P., Zhang, S., ... & Hu, J. H. (2016). Amorphous carbon shell on Si particles fabricated by carbonizing of polyphosphazene and enhanced performance as lithium ion battery anode.Materials Letters, 171, 63-67.

  5. Lu L, Guo M, Thornley S, Hu, J. H. et al. Remote plasma sputtering deposited Nb-doped TiO 2 with remarkable transparent conductivity[J]. Solar Energy Materials and Solar Cells, (2016), 149: 310-319.

  6. Hu, J., Wang, P., Liu, P., Cao, G., Wang, Q., Wei, M., ... & Shao, G. (2016). In Situ Fabrication of Nano Porous NiO-Capped Ni3P film as Anode for Li-Ion Battery with Different Lithiation Path and Significantly Enhanced Electrochemical Performance. Electrochimica Acta, 220, 258-266

  7. Zhang, X., Zhang, P., Wang, L., Gao, H., Zhao, J., Liang, C., ... & Hu, J. H.. (2016). Template-oriented synthesis of monodispersed SnS2@ SnO2 hetero-nanoflowers for Cr (VI) photoreduction. Applied Catalysis B: Environmental, 192, 17-25.

  8. Wang, L., Zhang, X., Gao, H., Hu, J., Mao, J., Liang, C., ... & Shao, G. 3D CuO Network Supported TiO2 Nanosheets with Applications for Energy Storage and Water Splitting. Science of Advanced Materials.8(6) (2016) 1256-1262.

  9. Yuan, G., Cao, G., Yue, Q., Yang, L., Yun, Y., Shao, G., & Hu, J. (2016). Formation and fine-structures of nano-precipitates in ZIRLO. Journal of Alloys and Compounds, 687, 451-457.

  10. Hu, J., Yang, L., Cao, G., Yun, Y., Yuan, G., Yue, Q., & Shao, G. (2016). On the oxidation behavior of (Zr, Nb) 2 Fe under simulated nuclear reactor conditions. Corrosion Science, 112, 718-723.

  11. Yuan, G., Cao, G., Yue, Q., Yang, L., Hu, J., & Shao, G. (2016). Formation of nanocrystalline δ-ZrH x in Zircoloy-4: Orientation relationship and twinning. Journal of Alloys and Compounds, 658, 494-499.

  12. Wei, M., Yuan, P., Chen, W., Hu, J., Mao, J., & Shao, G. (2015). Facile assembly of partly graphene-enveloped sulfur composites in double-solvent for lithium–sulfur batteries. Electrochimica Acta, 178, 564-570.

  13. Zhang, P., Wang, L., Zhang, X., Hu, J., & Shao, G. Three-dimensional porous networks of ultra-long electrospun SnO2 nanotubes with high photocatalytic performance. Nano-Micro Letters.7(1)(2015) 86-95.

  14. Tatsuoka, H., Suzuki, H., Suzuki, T., Li, W., Hu, J., Meng, X., & Meng, E. (2015). Synthesis and structural control of silicon and silicide nanowires/microrods using metal chloride sources. Japanese Journal of Applied Physics, 54(7S2), 07JD02.

  15. Wang, L., Zhang, X., Zhang, P., Cao, Z., & Hu, J. (2015). Photoelectric conversion performances of Mn doped TiO2 under> 420nm visible light irradiation. Journal of Saudi Chemical Society, 19(5), 595-601.

  16. Wei, M., Yuan, P., Chen, W., Hu, J., Mao, J., & Hu, J. H.. (2015). Facile assembly of partly graphene-enveloped sulfur composites in double-solvent for lithium–sulfur batteries. Electrochimica Acta, 178, 564-570.

  17.Zhang, P., Wang, L., Zhang, X., Shao, C., Hu, J., &Shao, G. (2015). SnO2-core carbon-shell composite nanotubes with enhanced photocurrent and photocatalytic performance. Applied Catalysis B: Environmental, 166, 193-201.

  18. Li, C., Hu, S., Yang, L., Fan, J., Yao, Z., Zhang, Y., ... & Hu, J.. Light‐Induced Ion Rectification in Zigzag Nanochannels. Chemistry–An Asian Journal.10(12) (2015)2733-2737.

  19. Fan, J., Li, Z., Zhou, W., Miao, Y., Zhang, Y., Hu, J., & Shao, G. (2014). Dye-sensitized solar cells based on TiO nanoparticles/nanobelts double-layered film with improved photovoltaic performance. Applied Surface Science, 319, 75-82.

  20. Li, W., Ishikawa, D., Hu, J., & Tatsuoka, H. (2014). Growth of MnSi1. 7 Layers on MnSi Substrate by Molten Salt Method. Journal of Electronic Materials, 43(6), 1487-1491.

  21. Cao, G., Wang, L., Fu, Z., Hu, J., Guan, S., Zhang, C., ... & Zhu, S. (2014). Chemically anchoring of TiO2 coating on OH-terminated Mg3 (PO 3) 2 surface and its influence on the in vitro degradation resistance of Mg–Zn–Ca alloy. Applied Surface Science, 308, 38-42.

  22. Yuan, P., Wei, M., Fu, Z., Shao, G., Tatsuoka, H., & Hu, J. (2014). Reactive vapor deposition and electrochemical performance of nano-structured magnesium silicide on silicon and silicon carbide substrates. Materials Science in Semiconductor Processing, 27, 873-876.

  23. Bai, K., Zhang, Y., Fu, Z., Zhang, C., Cui, X., Meng, E., ... & Hu, J. (2012). Fabrication of chitosan/magnesium phosphate composite coating and the in vitro degradation properties of coated magnesium alloy. Materials Letters, 73, 59-61.

  24. Hu, J., Zhang, C., Li, W., Guan, S., & Tatsuoka, H. (2011). Preparation and electrical properties of Mn silicides by reaction of MnCl 2 and Si powder.Physics Procedia, 11, 138-141.

  25. Hu, J., Zhang, C., Cui, B., Bai, K., Guan, S., Wang, L., & Zhu, S. (2011). In vitro degradation of AZ31 magnesium alloy coated with nano TiO2 film by sol–gel method. Applied Surface Science, 257(21), 8772-8777.

  26. Junhua Hu, Caili Zhang, Baohong Cui, Kuifeng Bai, Shaokang Guan, Liguo Wang, Shijie Zhu. In vitro degradation of AZ31 magnesium alloy coated with nano TiO2 film by sol–gel method. Applied Surface Science .257(2011) 8772-8777.

  27. J. Hu, A. Kato, T. Sadoh, Y. Maeda, K.N. Galkin, T.V.Turchin, N.G.Galkin, H. Tatsuoka., Optical and Electronic Properties of M2Si (M=Mg, Ca and Sr) Grown by Reactive Deposition Technique, Inte.J. Modern Physics B 24 (2010) 3693-3699.

  28. J. Hu, C. Zhang, S. Guan, L. Wang, S. Zhu. Nanoporous TiO2 films prepared by thermal rapid treatment (TRT). Materials Letters.64 (2010) 2569-2571.

  29. J. Hu, T. Kurokawa, T. Suemasu, Sh. Takahara, M. Itakura, H. Tatsuoka. Growth of Manganese Silicide Layers on Si Substrates using MnCl2 Source.Phys. Status. Solidi. A.206(2009)233–237.

  30. J. Hu, Shaokang Guan, C. Zhang, Ch Ren, C. Wen, Zh. Zeng and L. Peng. Corrosion protection of AZ31 magnesium alloy by a TiO2 coating prepared by LPD method. Surface and Coatings Technology .203(2009) 2017-2020.

  申请专利:

  1 . 碳修饰TiO2/WO3复合纳米纤维光催化剂、制备方法及应用- CN201610169182.4

  2. Au修饰TiO2/WO3异质结纳米纤维光催化剂、制备方法及应-CN201610169194.7

  3. 锂电池用多层薄膜负极、制备方法及应用-CN201610169397.6

  4. 一种铌掺杂二氧化锡透明导电膜及其制备方法-CN201610339080.2

  5. 一种铌掺杂二氧化钛透明导电膜的制备方法及铌掺杂二氧化钛透明导电CN201610339521.9

  6. 一种用于生物植入的镁或镁合金材料及其制备方法- CN201110348249.8

  7. 一种新型可生物降解血管支架用Mg-Zn-Y-Nd镁合金及其制备方法- CN201110043303.8

  8. 一种制备高价态锰掺杂二氧化钛的方法- CN201310430267.X

  9. 一种钠离子电池NaxMnO2正极材料的合成方法- CN201510101300.3

  10.一种单相方钴矿结构NiP3的制备方法- CN201610169416.5




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