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Kvantovaya Elektronika, 2013, Volume 43, Number 1, Pages 55–59 (Mi qe15065)  

This article is cited in 9 scientific papers (total in 9 papers)

Interaction of laser radiation with matter

Laser ablation and ionisation by laser plasma radiation in the atmospheric-pressure mass spectrometry of organic compounds

A. V. Pentoa, S. M. Nikiforova, Ya. O. Simanovskyb, A. A. Grechnikovc, S. S. Alimpieva

a Prokhorov General Physics Institute of the Russian Academy of Sciences, Moscow
b STC "FIZPRIBOR", Ltd., Moscow
c Vernadsky Institute of Geochemistry and Analytical Chemistry, Russian Academy of Sciences, Moscow

Abstract: A new method was developed for the mass spectrometric analysis of organic and bioorganic compounds, which involves laser ablation with the ionisation of its products by laser-plasma radiation and enables analysing gaseous, liquid, and solid substances at atmospheric pressure without sample preparation. The capabilities of this method were demonstrated by the examples of fast pharmaceutical composition screening, real-time atmosphere composition analysis, and construction of the mass spectrometric images of organic compound distributions in biological materials.

Keywords: mass-spectrometry of organic compounds, laser ablation, laser plasma radiation

Full text: PDF file (888 kB)
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English version:
Quantum Electronics, 2013, 43:1, 55–59

Bibliographic databases:

PACS: 52.38.Mf, 52.50.Jm, 82.80.Ms
Received: 30.10.2012

Citation: A. V. Pento, S. M. Nikiforov, Ya. O. Simanovsky, A. A. Grechnikov, S. S. Alimpiev, “Laser ablation and ionisation by laser plasma radiation in the atmospheric-pressure mass spectrometry of organic compounds”, Kvantovaya Elektronika, 43:1 (2013), 55–59 [Quantum Electron., 43:1 (2013), 55–59]

Linking options:
  • http://mi.mathnet.ru/eng/qe15065
  • http://mi.mathnet.ru/eng/qe/v43/i1/p55

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    Citing articles on Google Scholar: Russian citations, English citations
    Related articles on Google Scholar: Russian articles, English articles

    This publication is cited in the following articles:
    1. Quantum Electron., 43:9 (2013), 865–870  mathnet  crossref  adsnasa  isi  elib
    2. K.A. Moshkunov, S.S. Alimpiev, A.A. Grechnikov, S.M. Nikifirov, A.V. Pento, J. Phys.: Conf. Ser, 558 (2014), 012012  crossref  adsnasa  isi  scopus
    3. S. S. Alimpiev, A. A. Grechnikov, S. M. Nikiforov, Phys. Usp., 58:2 (2015), 191–195  mathnet  crossref  crossref  adsnasa  isi  elib  elib
    4. Quantum Electron., 45:12 (2015), 1171–1177  mathnet  crossref  isi  elib
    5. Kopaev I.A., Grinfeld D.E., Monastyrskiy M.A., Alimpiev S.S., J. Anal. Chem., 70:13 (2015), 1590–1597  crossref  isi  scopus
    6. Bierstedt A., Riedel J., Eur. J. Mass Spectrom., 22:3 (2016), 105–114  crossref  isi  elib  scopus
    7. A. Bierstedt, H. Kersten, R. Glaus, I. Gornushkin, U. Panne, J. Riedel, Anal. Chem., 89:6 (2017), 3437–3444  crossref  isi  scopus
    8. Ablizen R.S., Monastyrskiy M.A., Skoblin M.G., Pento A.V., Bukharina A.B., Nikiforov S.M., Makarov A.A., Tech. Phys., 65:12 (2020), 1905–1911  crossref  isi  scopus
    9. Quantum Electron., 51:5 (2021), 393–399  mathnet  crossref  isi  elib
  • Квантовая электроника Quantum Electronics
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