The study of ions in the gas phase has a long history and has involved both chemists and physicists. The interplay of their competences with the use of very sophisticated commercial and/or homemade instrumentations and theoretical models has improved the knowledge of thermodynamics and kinetics of many chemical reactions, even if still many stages of these processes need to be fully understood. The new technologies and the novel free-electron laser facilities based on plasma acceleration open new opportunities to investigate the chemical reactions in some unrevealed fundamental aspects. The synchrotron light source can be put beside the FELs, and by mass spectrometric techniques and spectroscopies coupled with versatile ion sources it is possible to really change the state of the art of the ion chemistry in different areas such as atmospheric and astro chemistry, plasma chemistry, biophysics, and interstellar medium (ISM). In this manuscript we review the works performed by a joint combination of the experimental studies of ion–molecule reactions with synchrotron radiation and theoretical models adapted and developed to the experimental evidence. The review concludes with the perspectives of ion–molecule reactions by using FEL instrumentations as well as pump probe measurements and the initial attempt in the development of more realistic theoretical models for the prospective improvement of our predictive capability.

Perspectives of Gas Phase Ion Chemistry: Spectroscopy and Modeling / Satta, M.; Castrovilli, M. C.; Nicolanti, F.; Casavola, A. R.; Mancini Terracciano, C.; Cartoni, A.. - In: CONDENSED MATTER. - ISSN 2410-3896. - 7:3(2022), pp. 1-30. [10.3390/condmat7030046]

Perspectives of Gas Phase Ion Chemistry: Spectroscopy and Modeling

Nicolanti F.;Mancini Terracciano C.;Cartoni A.
2022

Abstract

The study of ions in the gas phase has a long history and has involved both chemists and physicists. The interplay of their competences with the use of very sophisticated commercial and/or homemade instrumentations and theoretical models has improved the knowledge of thermodynamics and kinetics of many chemical reactions, even if still many stages of these processes need to be fully understood. The new technologies and the novel free-electron laser facilities based on plasma acceleration open new opportunities to investigate the chemical reactions in some unrevealed fundamental aspects. The synchrotron light source can be put beside the FELs, and by mass spectrometric techniques and spectroscopies coupled with versatile ion sources it is possible to really change the state of the art of the ion chemistry in different areas such as atmospheric and astro chemistry, plasma chemistry, biophysics, and interstellar medium (ISM). In this manuscript we review the works performed by a joint combination of the experimental studies of ion–molecule reactions with synchrotron radiation and theoretical models adapted and developed to the experimental evidence. The review concludes with the perspectives of ion–molecule reactions by using FEL instrumentations as well as pump probe measurements and the initial attempt in the development of more realistic theoretical models for the prospective improvement of our predictive capability.
2022
free-electron laser; ion reactivity; ion sources; mass spectrometry; models; pump probe
01 Pubblicazione su rivista::01g Articolo di rassegna (Review)
Perspectives of Gas Phase Ion Chemistry: Spectroscopy and Modeling / Satta, M.; Castrovilli, M. C.; Nicolanti, F.; Casavola, A. R.; Mancini Terracciano, C.; Cartoni, A.. - In: CONDENSED MATTER. - ISSN 2410-3896. - 7:3(2022), pp. 1-30. [10.3390/condmat7030046]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1656566
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