A review of normalization techniques in analytical atomic spectrometry with laser sampling: From single to multivariate correction

Spectrochimica Acta Part B: Atomic Spectroscopy - Tập 65 - Trang 642-657 - 2010
Nikita B. Zorov1, Alexander A. Gorbatenko1, Timur A. Labutin1, Andrey M. Popov1
1Department of Chemistry, M. V. Lomonosov Moscow State University, Russian Federation

Tài liệu tham khảo

Russo, 1998, Laser ablation sampling, Trends Anal. Chem., 17, 461, 10.1016/S0165-9936(98)00047-8 Russo, 2002, Laser ablation in analytical chemistry—a review, Talanta, 57, 425, 10.1016/S0039-9140(02)00053-X Winefordner, 2004, Comparing several atomic spectrometric methods to the super stars: special emphasis on laser induced breakdown spectrometry, LIBS, a future super star, J. Anal. At. Spectrom., 19, 1061, 10.1039/b400355c Gottfried, 2008, Strategies for residue explosives detection using laser-induced breakdown spectroscopy, J. Anal. At. Spectrom., 23, 205, 10.1039/B703891G Gonzalez, 2008, Assessment of the precision and accuracy of thorium (232Th) and uranium (238U) measured by quadrupole based inductively coupled plasma-mass spectrometry using liquid nebulization, nanosecond and femtosecond laser ablation, J. Anal. At. Spectrom., 23, 229, 10.1039/B702754K Gorbatenko, 2003, Analysis of slightly volatile samples by atomic-ionization spectrometry with laser ablation into flame, J. Anal. Chem., 58, 343, 10.1023/A:1023245714653 Viger, 2005, Use of sol–gels as solid matrixes for trace analysis by UV laser ablation and laser-enhanced ionization detection, Anal. Chem., 77, 706, 10.1021/ac048884i Fotakis, 2007 Lazic, 2007, Underwater sediment analyses by laser induced breakdown spectroscopy and calibration procedure for fluctuating plasma parameters, Spectrochim. Acta Part B, 62, 30, 10.1016/j.sab.2006.11.004 Popov, 2009, Application of laser-induced breakdown spectrometry for analysis of environmental and industrial materials, Moscow Univ. Chem. Bull., 64, 366, 10.3103/S0027131409060030 Chaleard, 1997, Correction of matrix effects in quantitative elemental analysis with laser ablation optical emission spectrometry, J. Anal. At. Spectrom., 12, 183, 10.1039/A604456E Cleveland, 2008, A review of near-field laser ablation for high-resolution nanoscale surface analysis, Appl. Spectrosc. Rev., 43, 93, 10.1080/05704920701829084 Zorba, 2010, Optical far- and near-field femtosecond laser ablation of Si for nanoscale chemical analysis, Anal. Bioanal. Chem., 396, 173, 10.1007/s00216-009-3136-7 Sallé, 2007, Laser-induced breakdown spectroscopy in open-path configuration for the analysis of distant objects, Spectrochim. Acta Part B, 62, 739, 10.1016/j.sab.2007.07.001 Grönlund, 2006, Remote imaging laser-induced breakdown spectroscopy and laser-induced fluorescence spectroscopy using nanosecond pulses from a mobile lidar system, Appl. Spectrosc., 60, 853, 10.1366/000370206778062138 Sagdeev, 1985, Methods of remote surface chemical analysis for asteroid missions, Adv. Space Res., 5, 111, 10.1016/0273-1177(85)90394-1 Wüest, 2007, A combined Raman/laser ablation mass spectrometer instrument for exploration of small solar system objects, Adv. Space Res., 39, 477, 10.1016/j.asr.2004.09.025 Moenke-Blankenburg, 1989 Fornarini, 2005, Calibration analysis of bronze samples by nanosecond laser induced breakdown spectroscopy: a theoretical and experimental approach, Spectrochim. Acta Part B, 60, 1186, 10.1016/j.sab.2005.06.008 Garcia, 2008, Elemental fractionation and stoichiometric sampling in femtosecond laser ablation, J. Anal. At. Spectrom., 23, 470, 10.1039/b718845e Lednev, 2008, Plasma stoichiometry correction method in laser-induced breakdown spectroscopy, Laser Phys., 18, 850, 10.1134/S1054660X08070086 Gerlach, 1929 Thomsen, 2002, Walther Gerlach and the foundations of modern spectrochemical analysis, Spectroscopy, 17, 117 Pisonero, 2009, Critical revision of GD–MS, LA-ICP-MS and SIMS as inorganic mass spectrometric techniques for direct solid analysis, J. Anal. At. Spectrom., 24, 1145, 10.1039/b904698d Runge, 1964, Spectrochemical analysis using a pulsed laser source, Spectrochim. Acta Part B, 20, 733, 10.1016/0371-1951(64)80070-9 Kwak, 2009, Quantitative analysis of arsenic in mine tailing soils using double pulse-laser induced breakdown spectroscopy, Spectrochim. Acta Part B, 64, 1105, 10.1016/j.sab.2009.07.008 van der Mullen, 1990, Excitation equilibria in plasmas; a classification, Phys. Rep., 191, 109, 10.1016/0370-1573(90)90152-R Adrain, 1984, Laser microspectral analysis: a review of principles and applications, J. Phys. D: Appl. Phys., 17, 1915, 10.1088/0022-3727/17/10/004 G.W. Loge, Method for determining the concentration of atomic species in gases and solids, Patent no. WO97/15811 (1997). Mukherjee, 2006, Quantitative laser-induced breakdown spectroscopy for aerosols via internal calibration: application to the oxidative coating of aluminum nanoparticles, Aerosol Sci., 37, 677, 10.1016/j.jaerosci.2005.05.005 Panne, 1998, Analysis of glass and glass melts during the vitrification process of fly and bottom ashes by laser-induced plasma spectroscopy. Part I: Normalization and plasma diagnostics, Spectrochim. Acta Part B, 53, 1957, 10.1016/S0584-8547(98)00238-9 López-Moreno, 2005, Quantitative analysis of samples at high temperature with remote laser-induced breakdown spectrometry using a room-temperature calibration plot, Spectrochim. Acta Part B, 60, 1034, 10.1016/j.sab.2005.05.037 Borisov, 1999, Inductively couplet plasma mass spectrometric study of non-linear calibration behaviour during laser ablation of binary Cu–Zn alloys, Spectrochim. Acta Part B, 54, 1351, 10.1016/S0584-8547(99)00083-X Ko, 1989, On the internal standardization in optical emission spectrometry of microplasmas produced by laser ablation of solid samples, Fresenius' J. Anal. Chem., 335, 648, 10.1007/BF01204064 St-Onge, 1997, Quantitative analysis of additives in solid zinc alloys by laser-induced plasma spectrometry, J. Anal. At. Spectrom., 12, 997, 10.1039/a703102e Margetic, 2000, A comparison of nanosecond and femtosecond laser-induced plasma spectroscopy of brass samples, Spectrochim. Acta Part B, 55, 1771, 10.1016/S0584-8547(00)00275-5 Elhassan, 2008, Nanosecond and femtosecond laser induced breakdown spectroscopic analysis of bronze alloys, Spectrochim. Acta Part B, 63, 504, 10.1016/j.sab.2008.02.003 Pershin, 2006, Quantitative analysis of bronze samples by laser-induced breakdown spectroscopy (LIBS): a new approach, model, and experiment, Laser Phys., 16, 455, 10.1134/S1054660X06030066 Santagata, 2007, fs/ns dual-pulse LIBS analytic survey for copper-based alloys, Appl. Surf. Sci., 254, 863, 10.1016/j.apsusc.2007.07.203 Teghil, 2008, Applications of ultra-short pulsed laser ablation: thin films deposition and fs/ns dual-pulse laser-induced breakdown spectroscopy, Phys. Scripta, 78, 058113, 10.1088/0031-8949/78/05/058113 Bulatov, 2000, Converting spatial to pseudotemporal resolution in laser plasma analysis by simultaneous multifiber spectroscopy, Anal. Chem., 72, 2987, 10.1021/ac0001737 Sun, 2009, Correction of self-absorption effect in calibration-free laser-induced breakdown spectroscopy by an internal reference method, Talanta, 79, 388, 10.1016/j.talanta.2009.03.066 Tran, 2001, Determination of C:H:O:N ratios in solid organic compounds by laser-induced plasma spectroscopy, J. Anal. At. Spectrom., 16, 628, 10.1039/B009905H Kaski, 2004, Determination of Cl/C and Br/C ratios in pure organic solids using laser-induced plasma spectroscopy in near vacuum ultraviolet, J. Anal. At. Spectrom., 19, 474, 10.1039/B315410F De Lucia, 2003, Laser-induced breakdown spectroscopy analysis of energetic materials, Appl. Optics, 42, 6148, 10.1364/AO.42.006148 Rai, 2008, Identification of nitro-compounds with LIBS, Appl. Phys. Part B, 91, 645, 10.1007/s00340-008-3040-4 Anzano, 2008, Classification of polymers by determining of C1:C2:CN:H:N:O ratios by laser-induced plasma spectroscopy (LIPS), Polym. Test., 27, 705, 10.1016/j.polymertesting.2008.05.012 Eppler, 1996, Matrix effects in the detection of Pb and Ba in soils using laser-induced breakdown spectroscopy, Appl. Spectrosc., 50, 1175, 10.1366/0003702963905123 López-Moreno, 2005, Quantitative analysis of low-alloy steel by microchip laser induced breakdown spectroscopy, J. Anal. At. Spectrom., 20, 552, 10.1039/b419173k Cabalín, 2002, Time-resolved laser-induced plasma spectrometry for determination of minor elements in steelmaking process samples, Anal. Bioanal. Chem., 372, 352, 10.1007/s00216-001-1121-x Lucena, 2001, Three-dimensional distribution analysis of platinum, palladium and rhodium in auto catalytic converters using imaging-mode laser-induced breakdown spectrometry, Spectrochim. Acta Part B, 56, 177, 10.1016/S0584-8547(00)00298-6 Bassiotis, 2001, Effects of experimental parameters in quantitative analysis of steel alloy by laser-induced breakdown spectroscopy, Spectrochim. Acta Part B, 56, 671, 10.1016/S0584-8547(01)00225-7 St-Onge, 2005, Rapid quantitative analysis of magnesium stearate in tablets using laser induced breakdown spectroscopy, J. Pharm. Pharmaceut. Sci., 8, 272 Fink, 2002, Process analysis of recycled thermoplasts from consumer electronics by laser-induced plasma spectroscopy, Anal. Chem., 74, 4334, 10.1021/ac025650v Sallé, 2006, Comparative study of different methodologies for quantitative rock analysis by laser-induced breakdown spectroscopy in a simulated martian atmosphere, Spectrochim. Acta Part B, 61, 301, 10.1016/j.sab.2006.02.003 Ismail, 2004, LIBS limit of detection and plasma parameters of some elements in two different metallic matrices, J. Anal. At. Spectrom., 19, 489, 10.1039/b315588a Koch, 2005, Detection of manganese in solution in cavitation bubbles using laser induced breakdown spectroscopy, Spectrochim. Acta Part B, 60, 1230, 10.1016/j.sab.2005.06.015 Boyain-Goitia, 2003, Single-pollen analysis by laser-induced breakdown spectroscopy and Raman microscopy, Appl. Optics, 42, 6119, 10.1364/AO.42.006119 Zhang, 2008, Laser-induced breakdown spectroscopy for determination of the organic oxygen content in anthracite coal under atmospheric conditions, Appl. Spectrosc., 62, 458, 10.1366/000370208784046786 Delone, 1993, 351 Grad, 1993, Acoustic in situ monitoring of excimer laser ablation of different ceramics, Appl. Surf. Sci., 69, 370, 10.1016/0169-4332(93)90536-K Chen, 1988, Acoustic signal as an internal standard for quantitation in laser-generated plumes, Anal. Chem., 60, 2258, 10.1021/ac00171a020 Pang, 1989, Laser-enhanced ionization as a diagnostic tool in laser-generated plumes, Anal. Chem., 61, 2546, 10.1021/ac00197a018 Labutin, 2005, Analytical signal normalization in laser-enhanced ionization spectrometry with laser ablation of solid samples into a flame, Spectrochim. Acta Part B, 60, 775, 10.1016/j.sab.2005.03.019 Popov, 2007, Multivariate correction in laser-enhanced ionization with laser sampling, Spectrochim. Acta Part B, 62, 211, 10.1016/j.sab.2007.02.013 Popov, 2006, 1, 79 Gravel, 2004, Multielemental laser-enhanced ionization spectrometry for the determination of lead at the trace level in pelletized coal using laser ablation and internal standard signal normalization, Appl. Spectrosc., 58, 727, 10.1366/000370204873088 Pang, 1991, High-repetition rate laser ablation for elemental analysis in an inductively coupled plasma with acoustic wave normalization, Anal. Chem., 63, 390, 10.1021/ac00004a017 Kanický, 1998, Use of internal standardization to compensate for a wide range of absorbance in the analysis of glasses by UV laser ablation inductively coupled plasma atomic emission spectrometry, Appl. Spectrosc., 52, 638, 10.1366/0003702981944201 Kanický, 1999, Characterization of acoustic signals produced by ultraviolet laser ablation inductively coupled plasma atomic emission spectrometry, Fresenius' J. Anal. Chem., 363, 339, 10.1007/s002160051200 Kanický, 2000, Depth profiling of tin-coated glass by laser ablation inductively coupled plasma emission spectrometry with acoustic signal measurement, Fresenius' J. Anal. Chem., 366, 228, 10.1007/s002160050045 Kanický, 2000, Analysis of tungsten carbide coatings by infrared laser-induced argon spark with inductively coupled plasma atomic emission spectrometry, Spectrochim. Acta Part B, 55, 1601, 10.1016/S0584-8547(00)00266-4 Palanco, 2003, Spectral analysis of the acoustic emission of laser-produced plasmas, Appl. Optics, 42, 6078, 10.1364/AO.42.006078 Cheung, 1998, Ultra-micro analysis of liquids and suspensions based on laser-induced plasma emissions, Appl. Surf. Sci., 127, 274, 10.1016/S0169-4332(97)00642-9 Panne, 2001, Analysis of heavy metal aerosols on filters by laser-induced plasma spectroscopy, Spectrochim. Acta Part B, 56, 839, 10.1016/S0584-8547(01)00209-9 Alvira, 2009, Surface treatment analyses of car bearings by using laser-induced breakdown spectroscopy, Appl. Spectrosc., 63, 192, 10.1366/000370209787392067 Hrdlička, 2009, Correlation of acoustic and optical emission signals produced at 1064 and 532nm laser-induced breakdown spectroscopy (LIBS) of glazed wall tiles, Spectrochim. Acta Part B, 64, 74, 10.1016/j.sab.2008.10.043 Zhu, 1989, Elemental analysis based on chemiluminescence in the laser microprobe, Anal. Chem., 61, 2557, 10.1021/ac00197a020 Pang, 1991, Monitoring of formation rates of thin films in laser-induced chemical vapor deposition, Anal. Chem., 63, 2402, 10.1021/ac00021a004 Cheung, 1992, Pulsed laser photodissociation of chromium hexacarbonyl at 308nm: simultaneous monitoring of optical and acoustic emissions, Chem. Phys. Lett., 189, 164, 10.1016/0009-2614(92)85117-S Conesa, 2004, Acoustic and optical emission during laser-induced plasma formation, Spectrochim. Acta Part B, 59, 1395, 10.1016/j.sab.2004.06.004 Lu, 1997, Acoustic wave monitoring of cleaning and ablation during excimer laser interaction with copper surfaces, Appl. Surf. Sci., 119, 137, 10.1016/S0169-4332(97)00188-8 Zhu, 2001, Laser ablation of solid substrates in a water-confined environment, Appl. Phys. Lett., 79, 1396, 10.1063/1.1400086 Cheung, 1993, Single-shot elemental analysis of liquids based on laser vaporization at fluences below breakdown, Appl. Spectrosc., 47, 882, 10.1366/0003702934415192 Popov, 2008, Nonlinear normalization for laser-enhanced ionization spectrometry with laser sampling into a flame, Moscow Univ. Chem. Bull., 63, 219, 10.3103/S002713140804010X Zharov, 1986 Roland-Mieszkowski, 1991, Consequences of Nyquist theorem for acoustic signals stored in digital format 2006, 122 Labutin, 2009, Correlation between properties of a solid sample and laser-induced plasma parameters, Spectrochim. Acta Part B, 64, 938, 10.1016/j.sab.2009.07.033 Gorbatenko, 2006, Reduction of the matrix influence on analytical signal in laser-enhanced ionization spectrometry with laser sampling, Talanta, 69, 1046, 10.1016/j.talanta.2005.12.009 Xu, 1997, Absolute analysis of particulate materials by laser-induced breakdown spectroscopy, Anal. Chem., 69, 2103, 10.1021/ac970006f Huang, 2005, Laser-induced breakdown spectroscopy of liquid droplets: correlation analysis with plasma-induced current versus continuum background, J. Anal. At. Spectrom., 20, 53, 10.1039/b411719k Gornushkin, 1999, Some considerations on the correlation between signal and background in laser-induced breakdown spectroscopy using single-shot analysis, Anal. Chem., 71, 5447, 10.1021/ac990766l Lazic, 2005, Laser-induced breakdown spectroscopy in water: improvement of the detection threshold by signal processing, Spectrochim. Acta Part B, 60, 1002, 10.1016/j.sab.2005.06.007 Lazic, 2004, Quantitative laser induced breakdown spectroscopy analysis of ancient marbles and corrections for the variability of plasma parameters and of ablation rate, J. Anal. At. Spectrom., 19, 429, 10.1039/b315606k Fortes, 2005, Chronocultural sorting of archaeological bronze objects using laser-induced breakdown spectrometry, Anal. Chim. Acta, 554, 136, 10.1016/j.aca.2005.08.081 Castle, 1998, Variables influencing the precision of laser-induced breakdown spectroscopy measurements, Appl. Spectrosc., 52, 649, 10.1366/0003702981944300 Fornarini, 2006, Influence of laser wavelength on LIBS diagnostics applied to the analysis of ancient bronzes, Anal. Bioanal. Chem., 385, 272, 10.1007/s00216-006-0300-1 Fernandez, 1995, Correlation of spectral emission intensity in the inductively coupled plasma and laser-induced plasma during laser ablation of solid samples, Anal. Chem., 67, 2444, 10.1021/ac00110a020 Bolger, 2000, Semi-quantitative laser-induced breakdown spectroscopy for analysis of mineral drill core, Appl. Spectrosc., 54, 181, 10.1366/0003702001949375 Body, 2001, Optimization of the spectral data processing in a LIBS simultaneous elemental analysis system, Spectrochim. Acta Part B, 56, 725, 10.1016/S0584-8547(01)00186-0 Kurniawan, 2001, Application of primary plasma standardization to Nd-YAG laser-induced shock wave plasma spectrometry for quantitative analysis of high concentration Au–Ag–Cu alloy, Spectrochim. Acta Part B, 56, 1407, 10.1016/S0584-8547(01)00253-1 Bredice, 2007, Real time measurement of the electron density of a laser generated plasma using a RC circuit, Spectrochim. Acta Part B, 62, 836, 10.1016/j.sab.2007.06.011 Gorbatenko, 2002, Signal formation in Laser-Enhanced Atomic Ionization spectrometry with laser sampling into the flame, J. Anal. Chem., 57, 125, 10.1023/A:1014043302499 Huang, 2002, The correlation between ion production and emission intensity in the laser-induced breakdown spectroscopy of liquid droplets, Spectrochim. Acta Part B, 57, 35, 10.1016/S0584-8547(01)00349-4 Huang, 2004, Matrix effect on emission/current correlated analysis in laser-induced breakdown spectroscopy of liquid droplets, Spectrochim. Acta Part B, 59, 321, 10.1016/j.sab.2003.12.007 Huang, 2007, Laser-induced breakdown spectroscopy in analysis of Al3+ liquid droplets: on-line preconcentration by use of flow-injection manifold, Anal. Chim. Acta, 581, 303, 10.1016/j.aca.2006.08.041 Richner, 1990, Comparison of different excitation sources and normalization techniques in laser-ablation AES using a photodiode-based spectrometer, Appl. Spectrosc., 44, 1290, 10.1366/000370290789619559 Tanaka, 1995, Laser ablation /inductively coupled plasma mass spectrometry with aerosol density normalization, Anal. Sci., 11, 967, 10.2116/analsci.11.967 Baker, 1998, Investigation of light scattering for normalization of signals in laser ablation inductively coupled plasma mass spectrometry, Appl. Spectrosc., 52, 154, 10.1366/0003702981942492 Kano, 1989, Effect of the matrix in atomic-absorption determination of copper in silicate–magnetite samples on their atomization by radiation of a continuous laser, J. Appl. Spectrosc., 51, 637, 10.1007/BF00664357 Barnett, 1994 Sobral, 2005, Energy balance in laser ablation of metal targets, J. Appl. Phys., 98, 083305, 10.1063/1.2108154 Allen, 1997