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张权治

领域:高端装备制造产业 学校:大连理工大学职称:副教授

主要是针对低温等离子体技术中的关键物理问题及关键技术开展科学研究,如等离子体源电非对称效应问题的研究和等离子体刻蚀多孔材料问题的研究。...

具体了解该专家信息,请致电:027-87555799 邮箱 haizhi@uipplus.com

教育背景

2005.09-2009.07 大连理工大学 物理与光电工程学院 应用物理 学士 2009.09-2014.07 大连理工大学 物理与光电工程学院 等离子体物理 博士 2013.10-2014.04 比利时-安特卫普大学 化学学院 等离子体化学 博士(联合培养-双博士学位)

工作经历

2014.08-2016.05华为技术有限公司(2012实验室) 研究工程师 2016.06-2019.06比利时-安特卫普大学 博士后(玛丽居里学者)

项目课题经历

论文、成果、著作等

目前在Physical Review Letters, Plasma Sources Science and Technology, Applied Physics Letters等期刊上发表SCI论文27篇,论文总引用超过150次,其中2篇文章的他引超过30次。 发表论文: 1) Quan-Zhi Zhang*, and Annemie Bogaerts, “Plasma streamer propagation in structured catalysts”, Plasma Sources Sci. Technol. 27 (2018) 105013 2) Quan-Zhi Zhang*, and Annemie Bogaerts, “Capacitive electrical asymmetry effect in an inductively coupled plasma reactor”, Plasma Sources Sci. Technol. 27 (2018) 105019 3) Quan-Zhi Zhang*, Wei-Zong Wang* and Annemie Bogaerts*,“Importance of surface charging during plasma streamer propagation in catalyst pores”, Plasma Sources Sci. Technol. 27 ( 2018) 065009 4) Quan-Zhi Zhang*, and Annemie Bogaerts*, “Propagation of a plasma streamer in catalyst pores”, Plasma Sources Sci. Technol, 27 (2018) 035009 5) Quan-Zhi Zhang*, Stefan Tinck, Jean-Francois de Marneffe, Liping Zhang, and Annemie Bogaerts. “Mechanisms for plasma cryogenic etching of porous materials” Appl. Phys. Lett. 111, 173104 (2017) 6) Li Wang, De-Qi Wen, Quan-Zhi Zhang, Yuan-Hong Song, Yu-Ru Zhang, You-Nian Wang, “Disruption of self-organized striated structure induced by secondary electron emission in capacitive oxygen discharges”, Plasma Sources Sci. Technol. 2019 (accepted) 7) Annemie Bogaerts, Quan-Zhi Zhang, ZhangYu-Ru, Koen Van Laer, Weizong Wang, “Burning questions of plasma catalysis: Answers by modeling”, Catalysis Today. 2019 (accepted) 8) Jing-Yu Sun, De-Qi Wen, Quan-Zhi Zhang, Yong-Xin Liu, and You-Nian Wang, “The effects of electron surface interactions in geometrically symmetric capacitive RF plasmas in the presence of different electrode surface materials”,Phys. Plasmas. 2019 (accepted) 9) WenZhu Jia, Quan-Zhi Zhang, XiFeng Wang, Yuan-Hong Song, Ying-Ying Zhang, You-Nian Wang, “Effect of dust particle size on the plasma characteristics in a radio frequency capacitively coupled silane plasma”, J. Phys. D: Appl. Phys. 52 (2019) 015206 10) Jian-Guo Gu, Ya Zhang, Mingxiang Gao, Hong-Yu Wang, Quan-Zhi Zhang, Lin Yi, Wei Jiang, “Enhancement of surface discharge in catalyst pores in dielectric barrier discharges”, J. Appl. Phys. 2019 (accepted) 11) Mingxiang Gao, Ya Zhang*, Hongyu Wang, Bin Guo, Quanzhi Zhang, Annemie Bogaerts,“Mode transition of filaments in packed-bed dielectric barrier discharges”, Catalysts. 8 (2018) 248 12) Weizong Wang*, Antonin Berthelot, Quanzhi Zhang, and Annemie Bogaerts*, “Modelling of plasma-based dry reforming: How do uncertainties in the 2 input data affect the calculation results?”, J. Phys. D: Appl. Phys. 51 (2018) 204003 13) De-Qi Wen, Quan-Zhi Zhang, Wei Jiang, Yuan-Hong Song, Annemie Bogaerts and You-Nian Wang. “Phase modulation in pulsed dual-frequency capacitively coupled plasmas” J. Appl. Phys. 115, 233303 (2014) 14) Quan-Zhi Zhang, You-Nian Wang and Annemie Bogaerts. “Heating mode transition in a hybrid direct current/dual-frequency capacitively coupled CF4 discharge”, J. Appl. Phys., 115, 223302 (2014) 15) Ya Zhang, Wei Jiang, Quan-Zhi Zhang, and Annemie Bogaerts. “Computational study of plasma sustainability in radio frequency micro-discharges” J. Appl. Phys., 115, 193301(2014) 16) Jia Liu, Quan-Zhi Zhang, Yong-Xin Liu, Fei Gao, You-Nian Wang. “Measurements of ion energy distributions in a dual-frequency capacitively coupled plasma for Ar/O2 discharges” J. Phys. D: Appl. Phys. 46, 235202 (2013) 17) Quan-Zhi Zhang, Yong-Xin Liu, Wei Jiang, Annemie Bogaerts and You-Nian Wang. “Heating mechanism in direct current superposed single-frequency and dual-frequency capacitively coupled plasmas”, Plasma Sources Sci. Technol. 22, 025014 (2013) 18) Yong-Xin Liu, Quan-Zhi Zhang, Jia Liu, Yuan-Hong Song, Annemie Bogaerts and You-Nian Wang. “Electron bounce resonance heating in dual-frequency capacitively coupled oxygen discharges” Plasma Sources Sci. Technol. 22, 025012 (2013) 19) Yong-Xin Liu, Quan-Zhi Zhang, Jia Liu, Yuan-Hong Song, Annemie Bogaerts and You-Nian Wang. “Effect of bulk electric field reversal on the bounce resonance heating in dual-frequency capacitively coupled electronegative plasmas” Appl. Phys. Lett. 101, 114101 (2012) 20) Quan-Zhi Zhang, Shu-Xia Zhao, Wei Jiang, and You-Nian Wang. “Separate control between geometrical and electrical asymmetry effects in capacitively coupled plasma”, J. Phys. D: Appl. Phys. 45, 305203 (2012) 21) Yong-Xin Liu, Quan-Zhi Zhang, Wei Jiang, Xiang-Zhan Jiang, Wen-Qi Lu, and You-Nian Wang. “Experimental validation and simulation of collisionless bounce-resonance heating in capacitively coupled radio-frequency discharges” Plasma Sources Sci. Technol. 21, 035010 (2012) 22) Yong-Xin Liu, Quan-Zhi Zhang, Wei Jiang, Xiang-Zhan Jiang, Wen-Qi Lu, You-Nian Wang and Lu-Jing Hou. “Collisionless bounce resonance heating in dual-frequency capacitively coupled plasmas” Phys. Rev. Lett. 107, 055002 (2011) 23) Jing Bai, Jizhong Sun, Quanzhi Zhang, Dezhen Wang. “PIC simulation of RF hydrogen discharges in a transverse magnetic field”, Current Applied Physics 11, 140-144 (2011) 24) E Schungel, Q-Z Zhang, S Iwashita, J Schulze, L-J Hou, Y-N Wang and U Czarnetzki. “Control of plasma properties in capacitively coupled oxygen discharges via the electrical asymmetry effect”, J. Phys. D: Appl. Phys. 44 285205 (2011) 25) Quan-Zhi Zhang, Wei Jiang, Lu-Jing Hou, and You-Nian Wang. “Numerical simulations of electrical asymmetry effect on electronegative plasmas in capacitively coupled rf discharge”, J. Appl. Phys. 109, 013308 (2011) 26) Quan-Zhi Zhang, Wei Jiang, Shu-Xia Zhao, and You-Nian Wang. “Surface-charging effect of

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