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Sergey S. GOLIK, Alexey A. ILYIN, Michael Yu. BABIY, Yulia S. BIRYUKOVA, Vladimir V. LISITSA, Oleg A. BUKIN. Determination of Iron in Water Solution by Time-Resolved Femtosecond Laser-Induced Breakdown Spectroscopy[J]. Plasma Science and Technology, 2015, 17(11): 975-978. DOI: 10.1088/1009-0630/17/11/16
Citation: Sergey S. GOLIK, Alexey A. ILYIN, Michael Yu. BABIY, Yulia S. BIRYUKOVA, Vladimir V. LISITSA, Oleg A. BUKIN. Determination of Iron in Water Solution by Time-Resolved Femtosecond Laser-Induced Breakdown Spectroscopy[J]. Plasma Science and Technology, 2015, 17(11): 975-978. DOI: 10.1088/1009-0630/17/11/16

Determination of Iron in Water Solution by Time-Resolved Femtosecond Laser-Induced Breakdown Spectroscopy

Funds: supported by the Russian Science Foundation (agreement #14-50-00034) (measurements of limit of detection), Russian Foundation for Basic Research (NK 15-32-20878/15) obtained in the frame of “Organization of Scientific Research” in the Far Eastern Federal University supported by Ministry of Education and Science of Russian Federation
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  • Received Date: April 19, 2015
  • The influence of the energy of femtosecond laser pulses on the intensity of Fe I (371.99 nm) emission line and the continuous spectrum of the plasma generated on the surface of Fe3+ water solution by a Ti: sapphire laser radiation with pulse duration <45 fs and energies up to 7 mJ is determined. A calibration curve was obtained for Fe3+ concentration range from 0.5 g/L to the limit of detection in water solution, and its saturation was detected for concentrations above 0.25 g/L, which is ascribed to self-absorption. The 3σ-limit of detection obtained for Fe in water solution is 2.6 mg/L in the case of 7 mJ laser pulse energy. It is found that an increase of laser pulse energy insignificantly affects on LOD in the time-resolved LIBS and leads to a slight improvement of the limit of detection.
  • 1 Cremers D A, Radziemski L J. 2006, Handbook of Laser-Induced, Breakdown Spectroscopy, John Wiley & Sons, New York 2 Miziolek A W, Palleschi V, Schechter I, et al. 2006,Laser Induced Breakdown Spectroscopy (LIBS): Fun- damentals and Applications, Cambridge University Press, Cambridge 3 Singh J P, Thakur S N. 2007, Laser-Induced Breakdown Spectroscopy, Elsevier Science, Amsterdam 4 Tian Y, Wang Z, Han X, et al. 2014, Spectrochim.Acta B, 102: 52 5 Michel A P M, Chave1 A D. 2008, Appl. Optics, 47:G122 6 Xiu J, Zhong S, Hou H, et al. 2015, Appl. Spectroscopy,68: 1039 7 Song J-J, Tian Y, Lu Y, et al. 2014, Spectroscopy and Spectral Analysis, 34: 3104 8 Fortes F J, Guirado S, Metzinger A, et al. 2015, J.Anal. Atomic Spectrometry, 30: 1050 9 Huang J-S, Lin K-C. 2014, Journal of the Chinese Chemical. Society, 61: 175 10 Harmon R S, Russo R E, Hark R R. 2013, Spectrochim. Acta B, 87: 11 11 Hahn D W, Omenetto N. 2012, Appl. Spectroscopy,66: 347 12 Pathak A K, Kumar R, Singh V K, et al. 2012, Appl.Spectroscopy Reviews, 47: 14 13 Qiao S, Ding Y, Tian D, et al. 2015, Appl. Spectroscopy Reviews, 50: 1 14 Fortes F J, Moros J, Lucena P, et al. 2013, Anal.Chem., 85: 640 15 Yu X, Li Y, Gu X, et al. 2014, Environmental Monitoring and Assessment, 186: 8969 16 Lazic V, Jovi′ cevi′ c S. 2014, Spectrochim. Acta B, 101:288 17 Coale K H, Johnson K S, Steve E Fitzwater, et al.1996, Nature, 383: 495 18 Golik S S, Bukin O A, Ilyin A A, et al. 2012, Journal of Applied Spectroscopy, 79: 471 19 Noack J, Hammer D X, Noojin G D, et al. 1998, Appl.Phys., 83: 7488 20 Sirven J B, Bousquet B, Canioni L, et al. 2004, Spectrochim. Acta B, 59: 1033 21 Sarpe-Tudoran C, Assion A, Wollenhaupt M, et al.2006, Appl. Phys. Lett., 88: 261109 22 Ilyin A A, Sokolova E B, Golik S S, et al. 2012, Journal of Applied Spectroscopy, 78: 861 23 Pi? non V, Anglos D. 2009, Spectrochim. Acta B, 64:950 24 Kulchin Yu N, Mayor A Yu, Proschenko D Yu, et al.2015, Quantum Electronics, 45: 477 25 Kameneva P A, Imbs A B, Orlova T Yu. 2015, Toxicon, 98: 1 26 Beleneva I A, Shamshurina E V, Eliseikina M G. 2015,Ecotoxicol Environ. Saf., 115: 263 27 Golik S S, Ilyin A A, Kolesnikov A V, et al. 2013,Technical Phys. Lett., 39: 702 28 Evans M, Hastings N, Peacock B. 2000, Statistical Distributions, 3rd ed., John Wiley & Sons, New York

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