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个人信息Personal Information
教授
博士生导师
硕士生导师
性别:男
毕业院校:Ajou University
学位:博士
所在单位:物理学院
学科:等离子体物理
办公地点:辽宁省大连市高新园区凌工路2号 大连理工大学 三束4号楼406房间
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- [21]gaojian.全燮,Zhou, Lei,Liang, Jingshuang,Wang, Ziming,Wu, Yue,JAVID MUHAMMAD,董星龙,李寿哲,于洪涛.Optical emission spectroscopy diagnosis of energetic Ar ions in synthesis of SiC polytypes by DC arc discharge plasma[J],纳米研究 英文版,2022,11(3):1470-1481
- [22]李寿哲.Zhang, Xin,Chen, Chuan-Jie,张家良,王永兴,夏广庆.Role of Discharge Tube in Determination of Operating Mode in Waveguide-Based Atmospheric-Pressure Microwave-Induced Plasma[J],IEEE TRANSACTIONS ON PLASMA SCIENCE,2022,42(10,SI):2776-2777
- [23]Nie, Qiu-Yue.任春生,王德真,李寿哲,张家良,Kong, M. G..Self-organized pattern formation of an atmospheric pressure plasma jet in a dielectric barrier discharge configuration[J],APPLIED PHYSICS LETTERS,2022,90(22)
- [24]李寿哲.Chen, Chuan-Jie,Zhang, Xin,张家良,王永兴.Spectroscopic diagnosis of an atmospheric-pressure waveguide-based microwave N-2-Ar plasma torch[J],PLASMA SOURCES SCIENCE TECHNOLOGY,2022,24(2)
- [25]李寿哲.Li, Zhen-Ye,Wu, Yue,张家良.Spectroscopic diagnosis of gas temperature in blown-out plasma of atmospheric-pressure microwave oxygen plasma torch[J],PHYSICS OF PLASMAS,2022,25(1)
- [26]Huang, Wen-Tong.李寿哲,Guo, Qing-Chao,张家良,王德真,马腾才.[Spectroscopic investigation of the argon plasma discharge in quartz capillary at[J],Guang pu xue yu guang pu fen xi = Guang pu,2022,30(5):1167-70
- [27]Chen, Chuan-Jie.李寿哲.Spectroscopic measurement of plasma gas temperature of the atmospheric-pressure microwave induced nitrogen plasma torch[J],PLASMA SOURCES SCIENCE TECHNOLOGY,2022,24(3)
- [28]李寿哲.Huang, Wen-Tong,王德真.Spectroscopic study of a long high-electron-density argon plasma column generated at atmospheric pressure[J],PHYSICS OF PLASMAS,2022,17(2)
- [29]liulu.Wu, Yunfeng,Bi, Zhenhua,李寿哲,刘东平,Benstetter, Guenther,张杨,Hong, Yi,范红玉,倪维元,Yang, Qi.Surface damages of polycrystalline Wand La2O3-doped W induced by high-flux He plasma irradiation[J],JOURNAL OF NUCLEAR MATERIALS,2022,501:275-281
- [30]李寿哲.Xie, Shihui,Wu, Yue,Liao, Hongda.温室气体SF6和CF4的大气压微波等离子体降解技术[J],Gaodianya Jishu/High Voltage Engineering,2022,47(8):3012-3019
