Citation: | QI Haicheng (齐海成), GAO Wei (高巍), FAN Zhihui (樊智慧), LIU Yidi (刘一荻), REN Chunsheng (任春生). Volume Diffuse Dielectric Barrier Discharge Plasma Produced by Nanosecond High Voltage Pulse in Airflow[J]. Plasma Science and Technology, 2016, 18(5): 520-524. DOI: 10.1088/1009-0630/18/5/13 |
1 Tendero C, Tixier C, Tristant P, et al. 2006, Spectrochimica Acta Part B: Atomic Spectroscopy, 61: 2 2 Kogelschatz U. 2003, Plasma Chem. Plasma Process.,23: 1 3 Shao T, Yan P, Long K, et al. 2008, IEEE Trans. Plasma Sci., 36: 1358 4 Ayan H, Fridman G, Gutsol A, et al. 2008, IEEE Trans.Plasma Sci., 36: 504 5 Fang Z, Lei X, Cai L L, et al. 2011, Plasma Sci. Technol.,13: 676 6 Li X C, Chang Y Y, Liu R F, et al. 2013, Acta Phys.Sin., 62: 165205 7 Sawada Y, Ogawa S and Kogoma M. 1995, J. Phys. D:Appl. Phys., 28: 1661 8 Gherardi N, Martin S and Massines F. 2000, J. Phys. D:Appl. Phys., 33: L104 9 Walsh J and Kong M. 2007, Appl. Phys. Lett., 91:251504 10 Shao T, Zhang C, Long K, et al. 2010, Appl. Surf. Sci.,256: 3888 11 Roth J R, Sherman D M, Gadri R B, et al. 2000, IEEE Trans. Plasma Sci., 28: 56 12 Lu X, Cao Y, Yang P, et al. 2009, IEEE Trans. Plasma Sci., 37: 668 13 Zhang J, Liu J, Zhang R, et al. 2015, Plasma Sci. Technol., 17: 50 14 Chen H, Xiu Z, Bai F. 2014, Plasma Sci. Technol., 16:602 15 Ono R and Oda T. 2007, J. Phy. D: Appl. Phys., 40:176 16 Xu D A, Shneider M N, Lacoste D A, et al. 2014, J.Phys. D: Appl. Phys., 47: 235202 17 Liu Z J, Wang W C, Zhang L, et al. 2014, J. Appl. Phys.,115: 203302 18 Mizuno A, Clements J S and Davis R H. 1986, IEEE Trans. Industry Appl., 22: 516 19 Williamson J M, Trump D D, Bletzinger P, et al. 2006,J. Phys. D: Appl. Phys., 39: 4400 20 Duten X, Packan D, Yu L, et al. 2002, IEEE Trans.Plasma Sci., 30: 178 21 Takaki K, Hosokawa M, Sasaki T, et al. 2005, Appl.Phys. Lett., 86: 151501 22 Korolev Yu D and Mesyats G A. 1998, Physics of Pulsed Breakdown in Gases. URO Press, Yekaterinburg, chapter 6 23 Ayan H, Staack D and Fridman G. 2009, J. Phys. D:Appl. Phys., 42: 125202 24 Shao T, Long K, Zhang C, et al. 2008, J. Phys. D: Appl.Phys., 41: 215203 25 Yang D Z, Wang W C, Li S Z, et al. 2010, J. Phys. D:Appl. Phys., 43: 455202 26 Yang D Z, Wang W C, Jia L, et al. 2011, J. Appl. Phys.,109: 073308 27 Pai D, Lacoste D A and Laux C O. 2008, IEEE Trans.Plasma Sci., 36: 974 28 Panousis E, Merbahi N. Cl′ ement F, et al. 2009, IEEE Trans. Plasma Sci., 37: 1004 29 Levinson S J, Kunhardt E E.1982, IEEE Trans.Plasma Sci., 10: 266 30 Luo S C, Denning M and Scharer J E. 2008, J. Appl.Phys., 104: 013301 31 Yu L, Pierrot L, Laux C, et al. 2001, Plasma Chem.Plasma Process., 21: 483
|
[1] | Yaguang MEI (梅亚光), Shusen CHENG (程树森), Zhongqi HAO (郝中骐), Lianbo GUO (郭连波), Xiangyou LI (李祥友), Xiaoyan ZENG (曾晓雁), Junliang GE (葛军亮). Quantitative analysis of steel and iron by laser-induced breakdown spectroscopy using GA-KELM[J]. Plasma Science and Technology, 2019, 21(3): 34020-034020. DOI: 10.1088/2058-6272/aaf6f3 |
[2] | Jiamin LIU (刘佳敏), Ding WU (吴鼎), Cailong FU (付彩龙), Ran HAI (海然), Xiao YU (于潇), Liying SUN (孙立影), Hongbin DING (丁洪斌). Improvement of quantitative analysis of molybdenum element using PLS-based approaches for laser-induced breakdown spectroscopy in various pressure environments[J]. Plasma Science and Technology, 2019, 21(3): 34017-034017. DOI: 10.1088/2058-6272/aaf821 |
[3] | Congyuan PAN (潘从元), Jiao HE (何娇), Guangqian WANG (王广谦), Xuewei DU (杜学维), Yongbin LIU (刘永斌), Yahui SU (苏亚辉). An efficient procedure in quantitative analysis using laser-induced breakdown spectroscopy[J]. Plasma Science and Technology, 2019, 21(3): 34012-034012. DOI: 10.1088/2058-6272/aaf50f |
[4] | Qingdong ZENG (曾庆栋), Fan DENG (邓凡), Zhiheng ZHU (朱志恒), Yun TANG (唐云), Boyun WANG (王波云), Yongjun XIAO (肖永军), Liangbin XIONG (熊良斌), Huaqing YU (余华清), Lianbo GUO (郭连波), Xiangyou LI (李祥友). Portable fiber-optic laser-induced breakdown spectroscopy system for the quantitative analysis of minor elements in steel[J]. Plasma Science and Technology, 2019, 21(3): 34006-034006. DOI: 10.1088/2058-6272/aadede |
[5] | Li FANG (方丽), Nanjing ZHAO (赵南京), Mingjun MA (马明俊), Deshuo MENG (孟德硕), Yao JIA (贾尧), Xingjiu HUANG (黄行九), Wenqing LIU (刘文清), Jianguo LIU (刘建国). Detection of heavy metals in water samples by laser-induced breakdown spectroscopy combined with annular groove graphite flakes[J]. Plasma Science and Technology, 2019, 21(3): 34002-034002. DOI: 10.1088/2058-6272/aae7dc |
[6] | Dan LUO (罗丹), Ying LIU (刘英), Xiangyu LI (李香宇), Zhenyang ZHAO (赵珍阳), Shigong WANG (王世功), Yong ZHANG (张勇). Quantitative analysis of C, Si, Mn, Ni, Cr and Cu in low-alloy steel under ambient conditions via laser-induced breakdown spectroscopy[J]. Plasma Science and Technology, 2018, 20(7): 75504-075504. DOI: 10.1088/2058-6272/aabc5d |
[7] | Yangmin GUO (郭阳敏), Yun TANG (唐云), Yu DU (杜宇), Shisong TANG (唐仕松), Lianbo GUO (郭连波), Xiangyou LI (李祥友), Yongfeng LU (陆永枫), Xiaoyan ZENG (曾晓雁). Cluster analysis of polymers using laser-induced breakdown spectroscopy with K-means[J]. Plasma Science and Technology, 2018, 20(6): 65505-065505. DOI: 10.1088/2058-6272/aaaade |
[8] | Ying LI (李颖), Yanhong GU (谷艳红), Ying ZHANG (张莹), Yuandong LI (李远东), Yuan LU (卢渊). Analytical study of seashell using laser-induced breakdown spectroscopy[J]. Plasma Science and Technology, 2017, 19(2): 25501-025501. DOI: 10.1088/2058-6272/19/2/025501 |
[9] | Ali KHUMAENI, Wahyu Setia BUDI, Asep Yoyo WARDAYA, Rinda HEDWIG, Koo Hendrik KURNIAWAN. Rapid Detection of Oil Pollution in Soil by Using Laser-Induced Breakdown Spectroscopy[J]. Plasma Science and Technology, 2016, 18(12): 1186-1191. DOI: 10.1088/1009-0630/18/12/08 |
[10] | GUO Guangmeng (郭广盟), WANG Jie (王杰), BIAN Fang (边访), TIAN Di (田地), FAN Qingwen (樊庆文). A Hydrogel’s Formation Device for Quick Analysis of Liquid Samples Using Laser-Induced Breakdown Spectroscopy[J]. Plasma Science and Technology, 2016, 18(6): 661-665. DOI: 10.1088/1009-0630/18/6/13 |