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佘峻聪
2023-05-18 15:20
  • 佘峻聪
  • 佘峻聪 - 教授-中山大学-电子与信息工程学院-个人资料

近期热点

资料介绍

个人简历


1993年9月—1997年6月:中山大学物理学系就读本科 专业:物理学;获学士学位 \r
1997年9月—1999年6月:中山大学物理科学与工程技术学院就读硕士 专业:凝聚态物理学;硕士学习两年后转读博士 \r
1999年9月—2005年12月:中山大学物理科学与工程技术学院攻读博士学位 (其间2001/01-05, 2002/04-10赴英国卢瑟福阿普尔顿实验室开展合作研究) 专业:凝聚态物理学

研究领域


微电子学和固体电子学;凝聚态物理学""

近期论文


[33] M X Zeng, X M Li; Y F Huang; Z J Huang; R Z Zhan; Jun Chen; N S Xu; J C She*; S Z Deng*, Non-uniaxial stress assisted fabrication of nano-constriction on vertical nano-structured Si, Nanotechnology 30, 365601 (2019).\r
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[32] Y F Huang, Z J Huang, J C She*, M X Zeng, R Z Zhan, L Gong, Jun Chen, N S Xu, S Z Deng*, Quasi-saturated Arsenic Concentration and Uniform Electron Emission by Regulating Thermal Oxidation of Si Nanotips, IEEE Transactions on Electron Devices 66, 1545-1551 (2019).\r
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[31] Z Z Huang, Y F Huang, N S Xu, Jun Chen, J C She*, S Z Deng*, Band-to-Band Tunneling Dominated Thermo-Enhanced Field Electron Emission from p-Si/ZnO Nano-Emitters, ACS Appl. Mater. Interfaces 10, 21518-21526 (2018).\r
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[30] S S Li, M X Zeng, Y F Huang, R Z Zhan, Jun Chen, N S Xu, J C She*, S Z Deng*, J. Micromech. Microeng. 28, 085001 (2018).\r
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[29] W J Chen, X C Gui*, S S Li, L L Yang, B H Liang, H Zhu, J C She*, Zikang Tang, Fabrication of Wrinkled Graphene based on Thermal-Enhanced Rayleigh-BÉNard Convection for Field Electron Emission, Carbon 129, 646 (2018).\r
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[28] X T He, Z Z Huang, M L Chang, S Z Xu, F L Zhao, S Z Deng, J C She*, J W Dong*, Realization of Zero-Refractive-Index Lens with Ultralow Spherical Aberration, ACS Photonics 3, 2262-2267 (2016).\r
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[27] Z J Huang, Y F Huang, Z Z Pan, J C She*, S Z Deng, Jun Chen, N S Xu, Self-Modulated Field Electron Emitter: Gated Device of Integrated Si Tip-on-Nano-Channel, Applied Physics Letters 109, 233501 (2016).\r
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[26] T Cao, L T Luo, Y F Huang, B Ye, J C She*, S Z Deng, Jun Chen, N S Xu, Integrated ZnO Nano-Electron-Emitter with Self-Modulated Parasitic Tunneling Field Effect Transistor at the Surface of the p-Si/ZnO Junction, Scientific Reports 6, 33983 (2016).\r
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[25] Y F Huang, Z X Deng, W L Wang, J C She*, C L Liang, S Z Deng, and N S Xu*, Field-Induced Crystalline-to-Amorphous Phase Transformation on the Si Nano-Apex and the Achieving of Highly Reliable Si Nano-Cathodes, Scientific Report 5, 10631 (2015).\r
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[24] Y Huang, J C She*, W J Yang, S Z Deng, N S Xu, Control-Assembly of Layer-by-Layer Stacking Continuous Graphene Oxide Films and Its Application for Actively-Controlled Field Electron Emission Cathode, Nanoscale 6, 4250-4257 (2014).\r
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[23] D Li, J C She*, S Z Xu, S Z Deng, Zinc Oxide Nanowire Lateral Field Emission Devices and its Application as Display Pixel Structures, IEEE Transactions on Electron Devices 60, 2914-2930 (2013).\r
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[22]Z F Zhang, J C She*, H J Chen, S Z Deng, N S Xu, Laser-Induced Doping and Fine Patterning of Massively-Prepared Luminescent ZnS Nanospheres, Journal of Materials Chemistry C 1, 4970-4978 (2013).\r
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[21] W J Yang, J C She*, S Z Deng, N S Xu, Field Emission from a MOSFET-Controlled ZnO Nanowire Cold Cathode, IEEE Transactions on Electron Devices 59, 3461 (2012).\r
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[20] Y Huang, W L Wang, J C She*, Z B Li and S Z Deng, Correlation between carbon-oxygen atomic ratio and field emission performance of few-layer reduced graphite oxide, Carbon 50, 2657 (2012).\r
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[19] H He, J C She*, Y F Huang, S Z Deng, and N S Xu*, Precisely-controlled Fabrication of Single ZnO Nanoemitter Arrays and Their Possible Application in Low Energy Parallel Electron Beam Exposure, Nanoscale 4 2101 (2012).\r
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[18] Z M Xiao, J C She*, S Z Deng and N S Xu*, Large Piezoresistance of Single Silicon Nano-needles Induced by Non-Uniaxial Strain, Journal of Applied Physics 110, 114323 (2011).\r
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[17] Z M Xiao, J C She*, S Z Deng, Z K Tang, Z B Li, J M Lu, and N S Xu*, Field Electron Emission Characteristics and Physical Mechanism of Individual Single-Layer Graphene, ACS Nano 4, 6332–6336 (2010).\r
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[16] J B Chen, C J Xu, J C She*, S Z Deng, Jun Chen and N S Xu, Pulsed-Laser Treatment of Solution-Grown ZnO Nanowires in Nitrogen: Enhancing in Electrical Conduction and Field Emission, Journal of Applied Physics 107, 024312 (2010).\r
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[15] Z M Xiao, J C She*, Z B Li, Y H Yang, G W Yang, S Z Deng, Jun Chen and N S Xu*, Oscillating Current Observed in Field Emission From A Single Zinc Oxide Nanostructure And the Physical Mechanism, Journal of Applied Physics 106, 014310 (2009).\r
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[14] L W Feng, Jun Liu, J C She*, N S Xu, S Z Deng and Jun Chen, Three-dimensional, Six-fold Symmetry ZnO Sub-microstructures, Journal of Crystal Growth 311, 1435-1440 (2009).\r
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[13] J C She, Z M Xiao, Y H Yang, S Z Deng, Jun Chen, G W Yang*, and N S Xu*, Correlation between Resistance and Field Emission Performance of Individual Zno One-Dimensional Nanostructures, Acs Nano 2, 2015-2022 (2008).\r
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[12] R H Yao, J C She*, N S Xu, S Z Deng and Jun Chen, Self-Assembly of Au-Ag Alloy Nanoparticles by Thermal Annealing, Journal of Nanoscience and Nanotechnology 8, 3487-3492 (2008).\r
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[11] Jun Liu, J C She*, S Z Deng, Jun Chen, and N S Xu*, Ultrathin Seed-Layer for Tuning Density of Zno Nanowire Arrays and Their Field Emission Characteristics, Journal of Physical Chemistry C 112, 11685-11690 (2008).\r
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[10] J C She, S An, S Z Deng, Jun Chen, Z M Xiao, J Zhou and N S Xu*, Laser welding of a single tungsten oxide nanotip on a handleable tungsten wire: A demonstration of laser-weld nanoassembly, Applied Physics Letters 90, 073103 (2007).\r
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[9] J C She, Hao He, N S Xu*, S Z Deng, Jun Chen, S E Huq and L Wang, Arrays of Vacuum Microdiodes Using Uniform Diamondlike-Carbon Tip Apexes, Applied Physics Letters 89, 233518 (2006).\r
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[8] J C She, S Z Deng*, N S Xu*, R H Yao, and J Chen, Fabrication of vertically aligned Si nanowires and their application in a gated field emission device, Applied Physics Letters 88, 013112 (2006).\r
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[7] J C She, K Zhao, S Z Deng, J Chen and N S Xu*, Field Electron Emission of Si Nanotips with Apexes of Various Compositions, Applied Physics Letters 87, 052105 (2005).\r
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[6] J C She, N S Xu*, S Z Deng, Jun Chen, Z B Li, S E Huq and L Wang, Experimental Evidence of Resonant Field Emission from Ultrathin Amorphous Diamond Thin Film, Surface and Interface Analysis 36, 461-464 (2004).\r
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[5] J C She, N S Xu*, S Z Deng, Jun Chen, H Bishop, S E Huq, L Wang, D Y Zhong and E G Wang, Vacuum Breakdown of Carbon-Nanotube Field Emitters on a Silicon Tip, Applied Physics Letters 83, 2671-2673 (2003).\r
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[4] J C She, N S Xu*, S E Huq, S Z Deng and Jun Chen, Silicon Tip Arrays with Ultrathin Amorphous Diamond Apexes, Applied Physics Letters 81, 4257-4259 (2002).\r
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[3] J C She, Jun Chen, S Z Deng, X G Zheng and N S Xu*, An Experimental Study of the Field Emission Characteristics of Thin Films of an New Organic Compound CaCuB3, Ultramicroscopy 79, 149-153 (1999).\r
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[2] J C She, Y Y Yang, X M Chen, Jun Chen, S Z Deng, X G Zheng and N S Xu*, Preparation and Characterization of the [CaCu (bet)4](ClO4)4 Thin Films, Thin Solid Films 349, 225-229 (1999).\r
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[1] J C She, S E Huq, Jun Chen, S Z Deng and N S Xu*, Comparative Study of Electron Emission Characteristics of Silicon Tip Arrays with and without Amorphous Diamond Coating, Journal of Vacuum Science & Technology B 17, 592-595 (1999).

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