教育背景
1999.9-2002.7 南京大学, 获理论物理专业博士学位
1987.9-1989.7 苏州大学, 理论物理专业硕士研究生班毕业
1983.9-1987.7 苏州大学, 获物理学专业理学学士学位
工作经历
2004.8-至今 扬州大学教授
1998.7-2004.8 扬州大学副教授
1992.7-1998.8 扬州大学讲师
项目课题经历
主要科研项目
(1)受限磁纳米线中多磁畴结构的调控及其电流驱动的动力学研究,国家自然科学基金面上项目(编号:11674276,60 万,2017.01-2020.12,负责人)
(2)磁纳米条中磁畴结构的调控、电流驱动及其温度影响,国家自然科学基金面上项目(编号:11374253,82 万,2014.01-2017.12,负责人)
(3)受限的铁磁/反铁磁双层膜中的磁畴动力学行为与其磁化特性,国家自然科学基金面上项目(编号:10974170,32 万,2010.01-2012.12,负责人)
(4)重大气候灾害的早期预警信号和预测方法,国家科技部 973 计划项目子课题(编号:2012CB955902-2,60 万,2012.01-2016.12,负责人)
(5)异常事件持续性特征的动力统计相结合预测方法研究,国家科技部科技支撑计划项目子课题(编号:2009BAC51B04-4,22 万,2010.01-2013.12,负责人)
(6)极端天气气候事件的检测和可预测性 MC 模拟研究,国家科技部科技支撑计划项目子课题(编号:2007BAC29B04,30 万,2008.01-2011.12,负责人)
论文、成果、著作等
(1)Xiaoyong Xu, ZhijiaBao, Gang Zhou, Haibo Zengand Jingguo Hu, Enriching Photoelectrons via Three Transition Channels in Amino-Conjugated Carbon Quantum Dots to Boost PhotocatalyticHydrogen Generation, ACS Appl Mater & Interfaces 8, 14118(2016)
(2)ZhijiaBao,XiaoyongXu, Gang Zhou and Jingguo Hu, Constructing n-ZnO@Au heterogeneousnanorod arrays on p-Si substrate as efficientphotocathode for water splitting, Nanotechnology 27,305403(2016)
(3)Gang Zhou, Xiaoyong Xu, Tao Ding, Bing Feng, ZhijiaBao, and Jingguo Hu, Well−Steered Charge−Carrier Transfer in 3D Branched CuxO/ZnO@Au Hetero- structures for Efficient Photocatalytic HydrogenEvolution, ACS Appl Mater & Interfaces 7, 26819(2015)
(4) J Y Yu, S D Zhuang, X Y Xu, W C Zhu, B Feng and J G Hu,Photo- -generated electron reservoir in hetero-p–n CuO–ZnO nanocomposite device for visible-light driven photocatalytic reduction of aqueous Cr(VI), J. Mater. Chem. A, 3,1199(2015)
(5)Xiaoyong Xu, Jingguo Hu, Zongyou Yin, and Chunxiang Xu, Photoanode Current of Large−Area MoS2 Ultrathin NanosheetswithVertically Mesh−Shaped Structure on Indium Tin Oxide,ACS Appl Mater & Interfaces 6, 5983(2014)
(6)S D Zhuang, X Y Xu, B Feng, J G Hu, Y R Pang, G Zhou, L Tong and Y X Zhou, Photogenerated Carriers Transfer in Dye-Graphene−SnO2 Composites for Highly Efficient Visible-Light Photocatalysis, ACS Appl Mater & Interfaces 6, 613(2014)
(7) Y C Su, J L Sun, J G Hu and H Y Lei, Current-driven spring-like oscillatory motion of coupled vortex walls in a two-nanostripe system, Eur. Phys. Lett. 103, 67004 (2013)
(8) Y C Su, J G Hu, Exchange bias training effect under different energy dis- sipation pattern, J. Appl. Phys. 112, 043906 (2012)
(9) Y C Tao, X L Zhao, Z C Dong and J G Hu, Junctions with ferromagnetic contacts to probe pairing symmetry of pnictide superconductors, New J. Phys. 13, 123016 (2011)
(10) X Y Xu, M Li, J G Hu, J Dai, W W Xia, Strain-induced magnetoresistance for novel strain sensors, J. Appl. Phys. 108, 033916 (2010)
(11) Xiao-yong Xu, Hong-yu Tian, Xia Qian, and Jing-guo Hu, “The cooling field and the exchange bias in ferromagnet/antiferromagnet bilayers”, Journal Applied Physics 106, 093910(2009)
(12) Lei Cai,Yong-chun Tao, Jing-guoHu,andGuo-junJin, Effect of Rashba spin-orbit coupling on the spin-polarized transport in ferromagnet/semiconductor double tunnel junctions, Physical Letter A 372, 5361 (2008)
(13) M. P. Kostylev, G. Gubbiotti, Jing-guo Hu, G. Carlotti, T. Ono and R. L. Stamps, Dipole-exchange propagating spin-wave modes in metallic ferromagnetic stripes,Physical Review B 76, 054422(2007)
(14) M. Kostylev, Jing-guo Hu, and R. L. Stamps, Confinement quantization of pump instability threshold in a metallic ferromagnetic stripe, Applied Physical Letter 90, 012507(2007)
(15) Jing-guo Hu, GuojunJina, R.L. Stamps, Yu-qiang Ma, Measurement of exchange anisotropy in exchange-bias bilayers, J Magn and Magn Mater 301, 238 (2006)
(16)Yong-chun Tao and Jing-guo Hu, Coherent transport and Andreev reflection in ferromagnetic/semiconductor/superconductor ferromagnetic semiconductor double tunneling junctions, Physical Review B 72, 165329(2005)
(17) Jing-guo Hu, Guo-junJin, An Hu, and Yu-qiangMa,Thickness Dependence of Exchange Bias and Coercivity in Ferromagnetic/Antiferromagnetic Bilayer, European Physical Journal B 40, 265 (2004)
(18) Jing-guo Hu, Guo-junJin, and Yu-qiang Ma, Thickness Dependence of Exchange Bias and Coercivity in Ferromagnetic/Antiferromagnetic Bilayers, Journal of Applied Physics 94, 2529 (2003)
(19) Jing-guo Hu, Guo-junJin, and Yu-qiang Ma, Thichness and Angular Dependences of Exchange Bias in Ferromagnetic/Antiferromagnetic Bilayers, Journal of Applied Physics 92, 1009 (2002)
(20) Jing-guo Hu, Guo-junJin, and Yu-qiang Ma, Ferromagnetic Resonance andExchange Anisotropy inFrromagneticAntiferromagntic Bilayers, Journal ofAppliedPhysics91, 2180 (2002)
专利、著作版权等
1、专利技术
许小勇、庄申栋、张业伟和胡经国,基于ZnO量子点的紫外吸收可见透明的有机玻璃及制备,发明专利,专利号:ZL201310111306.X
胡经国、李宁、吴玉鸾、陈磊和赵成,声表面波器件测试调试架,实用新型专利,专利号:ZL 2014 2 0194008.1
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