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陕西师范大学物理学与信息技术学院导师教师师资介绍简介-郑海荣

本站小编 Free考研考试/2021-07-04

教育经历:
08/1999 ~ 05/2003博士(凝聚态物理) Department ofPhysics & Astronomy,The University of Georgia, Athens, Georgia, USA.
08/1997 ~ 08/1999硕士(凝聚态物理)Department of Physics,University of Puerto Rico, Mayaguez, Puerto Rico.
09/1987 ~ 06/1990硕士(光学),陕西师范大学物理系,中国科学院物理研究所.
09/1980 ~ 07/1984学士(物理学),陕西师范大学物理系.

工作经历:
08/2016 ~ 至今 研究生院院长, 陕西师范大学
08/2012 ~ 08/2016 研究生院常务副院长(兼党委研工部部长), 陕西师范大学
06/2005 ~ 至今教授、博士生导师. 陕西师范大学物理学与信息技术学院,陕西师范大学
08/2004 ~ 06/2005助理教授(Assistant Professor), Department of Physics, Georgia Southern University,Statesboro, Georgia, USA
06/2003 ~ 08/2004博士后, Department of Physics & Astronomy, The University of GeorgiaAthens, Georgia, USA
12/2002 ~ 06/2003 博士后, Department of Physics, Clemson University, Clemson, South Carolina, USA
08/2001 ~ 01/2003助教(Teaching Assistant),Department of Physics & Astronomy,The University of Georgia, Athens, Georgia, USA
08/1999 ~ 07/2001研究助理(Research Assistant),Department of Physics & Astronomy,The University of Georgia, Athens, Georgia, USA
08/1984 ~07/1997助教、讲师、副教授, 陕西师范大学物理系.

学术及社会兼职:
《Optical Materials》及《光散射学报》副主编,《发光学报》编委,亚洲光谱学会议国际指导委员会委员,等离激元光子学国际委员会委员,中国物理学会发光分会委员,第一届等离激元光子学会议国际委员会主席团成员,陕西省光学学会副理事长,中国学位与研究生教育学会评估委员会委员,全国教育专业学位研究生教育指导委员会委员,西安市雁塔区人大代表、常委会委员,陕西省归侨侨眷第七届委员会常务委员。

研究领域:
激光光谱学,表面增强光谱学,表面等离激元光子学,激发态动力学,纳米材料及凝聚态物质的光学性质。

主持项目:
科研方面:科技部重点纳米科技重点专项,国家自然科学基金重大研究计划培育项目,国家自然科学基金面上项目,教育部科学技术研究重点项目,教育部留学回国人员科研项目,陕西省科技计划项目,陕西师范大学中央高校基本科研业务费资助重点项目;
教学方面:《量子力学》国家双语教学示范课程,《近代物理》陕西省高等学校教学团队,以及其它省级教改项目。

讲授课程:
《量子力学》,《原子物理学》,《激光光谱学原理与技术》,《现代光学实验》,《高等量子力学》,《科技英语》,《University Physics 》,《Physics Lab》.

主要获奖情况:
陕西省普通高等学校教学名师,2019
全国明德优秀教师奖, 2014
陕西师范大学年度教学标兵,2013
全国宝钢优秀教师奖, 2010
陕西高校巾帼建功标兵,2010
陕西省优秀留学回国人员,2009
陕西省高等学校优秀共产党员,2009
陕西省普通高等学校优秀教材一等奖《QuantumMechanics(量子力学)》,2018
陕西省科技成果二等奖(主持),2015
陕西省教育厅科学技术成果一等奖(主持), 2014
陕西省高等教育教学成果二等奖三项(主持), 2013,2015,2019

代表性科研论文:
1. Self-suspended rare-earth doped up-conversion luminescent waveguide: propagating and directional radiation, Opto-ElectronicAdvances, 2020, 3, 6, 190045.
2.Fast transformation of Rare-earth doped luminescent sub-microcrystalvia plasmonic nanoislands, J. Mater. Chem. C., 2020, 8, 4338-4342.
3. Hot electron and thermal effects in plasmonic catalysis of nanocrystal transformation, Nanoscale, 2020, 12, 8768-8774
4.Plasmonic Nanocavity Enhanced Vibration of Graphene by Radially Polarized Optical Field, Nanophotonics, 2020, 9, 7, 2017-2023.
5. Multi-plasmon Resonances Enhanced Two-photon Coherent Anti-Stokes Raman Scattering by nanorods, Spectroc. Acta Pt. A-Molec. Biomolec. Spectr., 2020, 231, 118117.
6.Vibrational spectra and chemical imaging of cyclo[18]carbon by tip enhanced Raman spectroscopy, Chem. Comm., 2020, 56, 2336-2339
7. High-performance upconversion luminescent waveguide using a rare-earth doped microtube with beveled ends, J. Mater. Chem. C., 2019, 7, 12704-12708.
8.Controlled Multichannel Surface Plasmon Polaritons Transmission on Atomic Smooth Silver Triangular Waveguide,Adv. Opt. Mater., 2019, 7, **.
9. Plasmon-Driven Catalysis on Molecules and Nanomaterials,Acc. Chem. Res., 2019, 52, 2506-25015.[Cover]
10. Chi Wang, Tingting Zhang, Zhenglong Zhang*, Hairong Zheng*, Investigation on Fano resonance and energy transfer of Hyper Ring–Loop nanostructure, Opt. Comm., 2018, 452, 434-439.
11. Plasmon-Driven Rapid In Situ Formation of Luminescence Single Crystal Nanoparticle, Small, 2019, **. [Cover]
12. Multiple surface plasmon resonances enhanced nonlinear optical microscopy, Nanophotonics,2019, 8(3): 487–493
13. Engineering the color output in a single upconversion microtube via intervention of the electronic population, Journal of Luminescence,2019, 205, 374-379
14. Enhanced upconversion fluorescent probe of single NaYF4:Yb3+/Er3+/Zn2+ nanoparticles for copper ion detection, RSC Adv., 2018, 8, 37618
15. Tunable flower-like upconversion emission and directional red radiation in a single NaYF4:Yb3+/Tm3+microcrystal particle,Journal of Alloys and Compounds, 2018, 748, 252e257
16. Highly efficient multi-colour upconversion emission of Yb3+/Er3+, Ho3+ codoped single LiYF4 octahedral microparticle, Journal of Luminescence, 2018, 196, 187-194
17. Molecular Resonant Dissociation of Surface-Adsorbed Molecules by Plasmonic Nanoscissors, Nanoscale, 2014, 6 (9), 4903
18.Plasmonresonancesand strong electric field enhancements in side-by-side tangent nanospheroidhomodimers,Opt.Express, 2013, 21, 17176.
19.Fabrication of flower-like silver nanostructure on the Al substrate for surface enhancedfluorescence.Appl. Phys. Lett.2012, 100, 051112.
20. Efficient fluorescenceemission and photon conversion of LaOF:Eu3+nanocrystals,Appl. Phys. Lett.,2011, 98, 011907.

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