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WANG Zhe (王哲), DONG Fengzhong (董凤忠), ZHOU Weidong (周卫东). A Rising Force for the World-Wide Development of Laser-Induced Breakdown Spectroscopy[J]. Plasma Science and Technology, 2015, 17(8): 617-620. DOI: 10.1088/1009-0630/17/8/01
Citation: WANG Zhe (王哲), DONG Fengzhong (董凤忠), ZHOU Weidong (周卫东). A Rising Force for the World-Wide Development of Laser-Induced Breakdown Spectroscopy[J]. Plasma Science and Technology, 2015, 17(8): 617-620. DOI: 10.1088/1009-0630/17/8/01

A Rising Force for the World-Wide Development of Laser-Induced Breakdown Spectroscopy

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  • 1 Winefordner J D, Gornushkin I B, Correll T, et al.2004, J. Anal. At. Spectrom., 19: 1061 2 Brech F, Cross L. 1962, Appl. Spectrosc., 16: 59 3 Wang Z, Yuan T B, Hou Z Y, et al. 2013, Front. Phys.,9: 419 4 Yu J, Zheng R E. 2012, Front. Phys., 7: 647 5 Li X W, Mao X L, Wang Z, et al. 2015, Plasma Sci.Technol., In Press 6 Farooq W A, Rasool K G, Tawfik W, et al. 2015,Plasma Sci. Technol., In Press 7 Golik S S, Ilyin A A, Babiy M Y, et al. 2015, Plasma Sci. Technol., In Press 8 Li X W, Wang Z, Fu Y T, et al. 2015, Plasma Sci.Technol., 17: 621 9 Wang J G, Fu H B, Ni Z B, et al. 2015, Plasma Sci.Technol., 17: 649 10 Liu P, Hai R, Wu D, et al. 2015, Plasma Sci. Technol.,17: 687 11 Hussain A, Li Q, Hao Z Q, et al. 2015, Plasma Sci.Technol., 17: 693 12 Ding Y, Tian D, Chen F P, et al. 2015, Plasma Sci.Technol., 17: 704 13 Fan J J, Zhang L, Wang X, et al. 2015, Plasma Sci.Technol., In Press 14 Wang X, Zhang L, Fan J J, et al. 2015, Plasma Sci.Technol., In Press 15 Pan G, Lu J D, Dong M R, et al. 2015, Plasma Sci.Technol., 17: 625 16 Yao S C, Xu J L, Bai K J, et al. 2015, Plasma Sci.Technol., In Press 17 Liu J, Jia Y H, Zhang Y, et al. 2015, Plasma Sci. Technol., 17: 644 18 Yang C, Jia Y H, Zhang Y, et al. 2015, Plasma Sci.Technol., 17: 671 19 Pan C Y, Du X W, Zeng Q, et al. 2015, Plasma Sci.Technol., 17: 682 20 Kong H Y, Sun L X, Hu J T, et al. 2015, Plasma Sci.Technol., In Press 21 Lin X M, Chang P H, Chen G H, et al. 2015, Plasma Sci. Technol., In Press 22 Lin X M, Li H, Yao Q H. 2015, Plasma Sci. Technol.,In Press 23 Li C, Zhao D Y, Wu X W, et al. 2015, Plasma Sci.Technol., 17: 638 24 Zhang D C, Ma X W, Wang S L, et al. 2015, Plasma Sci. Technol., In Press 25 Meng D S, Zhao N J, Ma M J, et al. 2015, Plasma Sci.Technol., 17: 632 26 Hu L, Zhao N J, Liu W Q, et al. 2015, Plasma Sci.Technol., 17: 699 27 Zheng P C, Shi M J, Wang J M, et al. 2015, Plasma Sci. Technol., 17: 664 28 Hu H Q, Huang L, Liu M H, et al. 2015, Plasma Sci.Technol., 17: 711 29 Zhong S L, Zheng R E, Lu Y, et al. 2015, Plasma Sci.Technol., In Press 30 Yang G, Qiao S J, Chen P F, et al. 2015, Plasma Sci.Technol., 17: 656 31 Qi L F, Sun L X, Xin Y, et al. 2015, Plasma Sci. Technol., 17: 676 32 Wang S L, Wang Y E, Chen S J, et al. 2015, Plasma Sci. Technol., 17: 716 33 Zhang L, Feng C L, Xiao Q M, et al. 2015, Plasma Sci.Technol., In Press 34 Bi Y F, Zhang Y, Yan J W, et al. 2015, Plasma Sci.Technol., In Press 35 Zhu D H, Cao Y, Zhong R, et al. 2015, Plasma Sci.Technol., In Press 36 Liu X N, Huang J M, Wu Z S, et al. 2015, Plasma Sci.Technol., In Press 37 Li C, Gao X, Li Q, et al. 2015, Plasma Sci. Technol.,In Press 38 Wang R, Ma X H, Yu Q, et al. 2015, Plasma Sci. Technol., In Press 39 Zhang L, Hu Z Y, Yin W B, et al. 2012, Front. Phys.,7: 690 40 Wang Z, Yuan T B, Lui S L, et al. 2012, Front. Phys.,7: 708 41 Dong F Z, Chen X L, Wang Q, et al. 2012, Front.Phys., 7: 679 42 Wang Q Q, Liu K, Zhao H, et al. 2012, Front. Phys.,7: 701 43 Li X F, Zhou W D, Cui Z F. 2012, Front. Phys., 7:721 44 Zhou W D, Li K X, Li X F, et al. 2011, Opt. Lett., 36:2961 45 Hou Z Y, Wang Z, Liu J M, et al. 2013, Opt. Express,21: 15974 46 Wang Z, Hou Z Y, Lui X L, et al. 2012, Opt. Express,20: A1011 47 Guo L B, Hu W, Zhang B Y, et al. 2011, Opt. Express,19: 14067 48 Cai Y, Chu P C, Ho S K, et al. 2012, Front. Phys., 7:670 49 Su X, Zhou W, Qian H. 2014, J. Anal. At. Spectrom.,29: 2356 50 Wang Z, Feng J, Li L Z, et al. 2011, J. Anal. At. Spectrom., 26: 2175 51 Wang Z, Feng J, Li L Z, et al. 2011, J. Anal. At. Spectrom., 26: 2289 52 Wang Z, Li L Z, West L, et al. 2012, Spectrochim. Acta Part B. At. Spectrosc., 68: 58 53 Li L Z, Wang Z, Li Z, et al. 2011, J. Anal. At. Spectrom., 26: 2274 54 Yuan T B, Wang Z, Li Z, et al. 2014, Analytica Chimica Acta, 807: 29 55 Zhang B, Sun L X, Yu H B, et al. 2015, Spectrochim Acta Part B. At. Spectrosc., 107: 32 56 Yuan T B, Wang Z, Hou Z Y, Li X W, et al. 2013, J.Anal. At. Spectrom., 28: 1045 57 Zhang L, Dong L, Dou H P, et al. 2008, Appl. Spectrosc., 62: 458 58 Dong M R, Lu J D, Yao S C, et al. 2011, J. Anal.Atom. Spectrom., 26: 2183 59 Zhang Y, Jia Y H, Chen J W, et al. 2012, Front. Phys.,7: 714
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