PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Spektrometria mas z indukcyjnie sprzężoną plazmą i analizatorem czasu przelotu jonów (ICP-TOFMS)

Identyfikatory
Warianty tytułu
EN
Inductively coupled plasma-time of flight mass spectrometry (ICP-TOFMS)
Języki publikacji
PL
Abstrakty
EN
This paper presents a powerful analytical technique which uses an inductively coupled plasma (ICP) ionization source and mass spectrometric (MS) detector with a time of flight (TOF) analyzer. The technique has been introduced in 1993 and has attracted rapidly the attention of researchers in the field of atomic spectroscopy as a method that offers substantial improvement of figures of merit of widely used ICP-MS technique with quadrupole filters. A mass spectrum in ICP-TOFMS technique is generated for a packet of ions simultaneously extracted from a continuous ion beam generated in plasma and accelerated to the same kinetic energy (Ek = 0.5 mv2). Setting the ions to the same kinetic energy results in different velocities acquired by the ions of different masses. The separation of the ions of different m/z is accomplished due to different times of their passing a fixed path (field-free region) in the instrument. Extremely low time difference (nanosecond regime) between adjacent masses reflects in quasi-simultaneous detection of all isotopes reaching the detector. The technique offers extremely high speed: spectral frequency 20-30 kHz (i.e. 20000-30000 mass spectra can be accumulated per second), an ability to obtain full elemental analysis for a packet of ions extracted from a continuous ion beam and a significantly better, as compared with quadrupole ICP-MS, precision of the measurements. Analytical performance and applicability of the technique in multi-clemental analysis of various materials have been extensively examined since 1998 when the ICP-TOFMS spectrometers have been commercially available (from LECO, USA („LECO Renaissance") and GBC, Australia („Optimass 8000")). The technique has turned to be particularly suited for detection of fast transient signals generated, e.g. by laser ablation, chromatographic systems, capillary clectrophoresis and FIA. The basic principles, analytical capabilities of the ICP-TOFMS technique and characteristics of the instruments used are discussed in this paper. Analytical applications of the technique are presented.
Rocznik
Strony
907--933
Opis fizyczny
Bibliogr. 86 poz., rys., wykr.
Twórcy
  • Katedra Chemii Analitycznej, Wydział Chemiczny, Politechnika Warszawska, ul. Noakowskiego 3, 00-664 Warszawa
  • Centralny Ośrodek Badawczo-Rozwojowy Opakowań, ul. Konstancińska 11, 02-942 Warszawa
autor
  • Katedra Chemii Analitycznej, Wydział Chemiczny, Politechnika Warszawska, ul. Noakowskiego 3, 00-664 Warszawa
Bibliografia
  • [1] R.S. Houk, V.A. Fassel, G.D. Flesch, H.J. Svec, A.L. Gray, C.E. Taylor, Anal. Chem., 1980, 52, 2283.
  • [2] A. Montaser (Ed.), inductively Coupled Plasma Mass Spectrometry, 1998, Wiley, New York.
  • [3] E. de Hoffmann, J. Charette, V. Stroobant, Spektrometria mas, 1998, WNT, Warszawa.
  • [4] S.J. Hill (Ed.), Inductively Coupled Plasma Spectrometry and its Applications, 1999, Sheffield Academic Press.
  • [5] J.G. Holland, S.D. Tanner (Eds), Plasma Source Mass Spectrometry: The New Millenium, 2001, Royal Society of Chemistry.
  • [6] R.A.W. Johnstone, M.E. Rose, Spektrometria mas, 2001, PWN, Warszawa.
  • [7] A.L. Burlingame, R.K. Boyd, S.J. Gaskell, Anal. Chem., 1998, 70, 647R.
  • [8] S. Becker, H.J. Dietze, Spectrochim. Acta, Part B: At. Spectrosc., 1998, 53, 1475.
  • [9] J.R. Bacon, J.S. Crain, L. Van Vaeck, J.G. Williams, J. Anal. At. Spectrom., 1999, 14, 1633.
  • [10] F. Vanhaecke, L. Moens, Fresenius’ J. Anal. Chem., 1999, 364,440.
  • [11] C. Moor, W. Devos, M. Guecheva, J. Kobler, Fresenius’ J. Anal. Chem., 2000,366, 159.
  • [12] J.A.C. Broekaert, Fresenius’ J. Anal. Chem., 2000,368, 15.
  • [13] D. Beauchemin, Anal. Chem., 2002, 74, 2873.
  • [14] E. Skrzydlewska, M. Balcerzak, P. Pasławski, Wiad. Chem., 2002, 56, 495.
  • [15] K. Tanaka, H. Waki, Y. Ido, S. Akita, Y. Yoshida, T. Yoshida, Rapid Commun. Mass Spectrom., 1988, 2, 151.
  • [16] M. Karas, F. Hillenkamp, Anal. Chem., 1988, 60, 2299.
  • [17] F. Hillenkamp, M. Karas, R.C. Beavis, B.T. Chait, Anal. Chem., 1991, 63, 1193A.
  • [18] R.W. Nelson, M.A. McLean, T.W. Hutchens, Anal. Chem., 1994, 66, 1408.
  • [19] C. Fenselau, Anal. Chem., 1997, 69, 661A.
  • [20] J.C. Blais, G. Bolbach, Spectra Anal., 1998, 27, 17.
  • [21] M.W.F. Nielen, Mass Spectrom. Rev., 1999, 18, 309.
  • [22] J.O. Jr. Lay, Mass Spectrom. Rev., 2001, 20, 172.
  • [23] M.J. Stump, R.C. Fleming, W.H. Gong, A.J. Jaber, J.J. Jones, Ch.W. Surber, Ch.L. Wilkins, Appl. Spectrosc. Rev., 2002,37, 275.
  • [24] R.J. Cotter, Time-of-Flight Mass Spectrometry. Instrumentation and Applications in Biological Research, 1997, American Chemical Society, Washington, DC.
  • [25] H. Pasch, W. Schrepp, MALD1-TOF Mass Spectrometry of Synthetic Polymers, 2003, Springer, Berlin.
  • [26] I.V. Chemushevich, W. Ens, K.G. Standing, Anal. Chem., 1999, 71, 452A.
  • [27] C.M. Henry, Anal. Chem., 1999, 71, 197A.
  • [28] J.G. Boyle, C.M. Whitehouse, Anal. Chem., 1992, 64, 2084.
  • [29] A.N. Verentchikov, W. Ens, K.G. Standing, Anal. Chem., 1994, 66, 126.
  • [30] P. Cao, M. Moini, Rapid Commun. Mass Spectrom., 1998,12, 864.
  • [31] I.V. Chemushevich, A.V. Loboda, B.A. Thomson, J. Mass Spectrom., 2001,36, 849.
  • [32] S.C. Davis, A.A. Makarov, J.D. Hughes, Rapid Commun. Mass Spectrom., 1999,13, 237.
  • [33] R.J.J. Vreuls, J. Dallüge, J. Beens, Spectra Anal., 2001, 220, 37.
  • [34] J. Vessella, F. Acobas, D. Benanou, J.L. Guinamant, Spectra Anal., 2001, 220, 32.
  • [35] I.M. Lazar, E.D. Lee, J.C.H. Sin, A.L. Rockwood, K.D. Onuska, M.L. Lee, Am. Lab., 2000,32, 110, 112, 116.
  • [36] J.T. Wu, M.G. Qian, M.X. Li, K. Zheng, P. Huang, D.M. Lubman, J. Chromatogr. A, 1998, 794, 377.
  • [37] J.T. Wu., L. He, M.X. Li, S. Parus, D.M. Lubman, J. Am. Soc. Mass Spectrom., 1997,8, 1237.
  • [38] I.M. Lazar, A.L. Rockwood, E.D. Lee, J.C.H. Sin, M.L. Lee, Anal. Chem., 1999, 71, 2578.
  • [39] D.P. Myers, M.J. Heintz, P.P. Mahoney, G. Li, G.M. Hieftje, Appl. Spcctrosc., 1994,48,1337.
  • [40] J. Pisonero, J.M. Costa, R. Pereiro, N. Bordei, A. Sanz-Medel, J. Anal. At. Spectrom., 2001,16, 1253.
  • [41] J. Pisonero, J.M. Costa-Femández, R. Pereiro, N. Bordel, A. Sanz-Medel, J. Anal. At. Spectrom., 2002,17, 786.
  • [42] D.P. Myers, G.M. Hieftje, Microchem. J., 1993, 48, 259.
  • [43] P.P. Mahoney, S.J. Ray, G.M. Hieftje, Appl. Spectrosc., 1997, 51, 16A.
  • [44] M. Guilhaus, Spectrochim. Acta, Part B: At. Spectrosc., 2000, 55, 1511.
  • [45] S.J. Ray, G.M. Hieftje, J. Anal. At. Spectrom., 2001,16, 1206.
  • [46] G.M. Hieftje, J.H. Barnes, O.A. Groen, A.M. Leach, D.M. McCIenathan, S.J. Ray, D.A. Solyom, W.C. Wetzel, M.B. Denton, D.W. Koppenaal, Pure Appl. Chem., 2001, 73, 1579.
  • [47] J. Coles, M. Guilhaus, Trends Anal. Chem., 1993,12, 203.
  • [48] M. Guilhaus, V. Młyński, D. Selby, Rapid Commun. Mass Spectrom., 1997, 11, 951.
  • [49] M. Guilhaus, D. Selby, V. Młyński, Mass Spectrom. Rev., 2000, 19, 65.
  • [50] X. Han, H. Emteborg, F.C. Adams, J. Anal. At. Spectrom., 1999, 14, 1807.
  • [51] B.A. Mamyrin, V.l. Karataev, D.V. Shmikk, V.A. Zagulin, Sov. Phys. JETP, 1973, 37,45.
  • [52] B.A. Mamyrin, V.l. Karataev, D.V. Shmikk, V.A. Zagulin, Zh. Exp. Teor. Fiz., 1973, 64, 82.
  • [53] H. Emteborg, X.D. Tian, M. Ostermann, M. Berglund, F.C. Adams, J. Anal. At. Spectrom., 2000, 15, 239.
  • [54] Materiały informacyjne firmy LECO dołączone do spektrometru ICP-aa TOFMS LECO Renaissance.
  • [55] E.H. Evans, J.J. Giglio, T.M. Castillano, J.A. Caruso, Inductively and microwave induced plasma sources for mass spectrometry, Royal Society of Chemistry, Cambridge, 1995.
  • [56] F. Vanhaecke, L. Moens, R. Dams, L. Allen, S. Georgitis, Anal. Chem., 1999, 71, 3297.
  • [57] M. Castillo Carrión, J. Reyes Andrés, J.A. Martin Rubi, H. Emteborg, J. Anal. At. Spectrom., 2003,18, 437.
  • [58] RE. Sturgeon, J.W.H. Lam, A. Saint, J. Anal. At. Spectrom., 2000, IS, 607.
  • [59] P.P. Mahoney, G. Li, G.M. Hieftje, J. Anal. At. Spectrom., 1996,11,401.
  • [60] D. Bleiner, K. Hametner, D. Günther, Fresenius’ J. Anal. Chem., 2000, 368, 37.
  • [61] D. Bleiner, A. Plotnikov, C. Vogt, K. Wetzig, D. Günther, Fresenius’ J. Anal. Chem., 2000, 368, 221.
  • [62] N.H. Bings, J. Anal. At. Spectrom., 2002,17, 759.
  • [63] A.M. Leach, G.M. Hieftje, J. Anal. At. Spectrom., 2002,17, 852.
  • [64] A.M. Leach, M. Heisterkamp, F.C. Adams, G.M. Hieftje, J. Anal. At. Spectrom., 2000,15, 151.
  • [65] M. Heisterkamp, F.C. Adams, Fresenius’ J. Anal. Chem., 2001,370, 597.
  • [66] K. Haas, J. Feldmann, R. Wennich, H.J. Stärk, Fresenius’ J. Anal. Chem., 2001,370, 587.
  • [67] J.R. Baena, M. Gallego, M. Valcarcel, J. Leenaers, F.C. Adams, Anal. Chem., 2001, 73, 3927.
  • [68] H.G. Infante, M. Heisterkamp, K. Benkhedda, K.V. Campenhout. R. Blust, F.C. Adams, Spectra Anal., 2001,220, 23.
  • [69] N.H. Bings, J.M. Costa-Fernandez, J.P. Guzowski, A.M. Leach, G.M. Hieftje, Spectrochim. Acta, Part B: At. Spectrosc., 2000, 55, 767.
  • [70] C.N. Ferrarello, M. Montes Bayón, R. Fernandez de la Campa, A. Sanz-Medel, J. Anal. At. Spectrom., 2000, 15, 1558.
  • [71] H.G. Infante, K.V. Campenhout, R. Blust, F.C. Adams, J. Anal. At. Spectrom., 2002, 17, 79.
  • [72] J.M. Costa-Fernández, N.H. Bings, A.M. Leach, G.M. Hieftje, J. Anal. At. Spectrom., 2000, 15, 1063.
  • [73] К. Benkhedda, H.G. Infante, E. Ivanova, F.C. Adams, J. Anal. At. Spectrom., 2000, 15, 1349.
  • [74] G. Centineo, M.M. Bayón, A. Sanz-Medel, J. Anal. At. Spectrom., 2000, 15, 1357.
  • [75] К. Benkhedda, H.G. Infante, E. Ivanova, F.C. Adams, J. Anal. At. Spectrom., 2001, 16, 995.
  • [76] D.M. McClenathan, S.J. Ray, G.M. Hieftje, J. Anal. At. Spectrom., 2001,16, 987.
  • [77] К. Benkhedda, H.G. Infante, F.C. Adams, E. Ivanova, Trends Anal. Chem., 2002, 21, 332.
  • [78] P.P. Mahoney, S.J. Ray, G. Li, G.M. Hieftje, Anal. Chem., 1999, 71, 1378.
  • [79] K.G. Heumann, S.M. Gallus, G. Rädlinger, J. Vogl, J. Anal. At. Spectrom., 1998,13, 1001.
  • [80] X.D. Tian, H. Emteborg, M. Barbaste, F.C. Adams, J. Anal. At. Spectrom., 2000,15, 829.
  • [81] M. Barbaste, L. Halicz, A. Gały, B. Medina, H. Emteborg, F. C. Adams, R. Łobiński, Talanta, 2001,54,307.
  • [82] M.V. Peláez, J.M. Costa-Femández, A. Sanz-Medel, J. Anal. At. Spectrom., 2002,17, 950.
  • [83] M. Granfors, I. Gustavsson, J. Anal. At. Spectrom., 2001,16, 1439.
  • [84] E. Skrzydlewska, M. Balcerzak, F. Vanhaecke, Anal. Chim. Acta, 2003,479, 191.
  • [85] E. Skrzydlewska, M. Balcerzak, wysłane do druku.
  • [86] M. Balcerzak, Anal. Sci., 2003,19, 979.
Uwagi
PL
Opracowane ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS2-0001-0086
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.