A New Insight on Stereo-Dynamics of Penning Ionization Reactions

Recent developments in the experimental study of Penning ionization reactions are presented here to cast light on basic aspects of the stereo-dynamics of the microscopic mechanisms involved. They concern the dependence of the reaction probability on the relative orientation of the atomic and molecul...

Full description

Bibliographic Details
Main Authors: Stefano Falcinelli, Fernando Pirani, Pietro Candori, Brunetto G. Brunetti, James M. Farrar, Franco Vecchiocattivi
Format: Article
Language:English
Published: Frontiers Media S.A. 2019-06-01
Series:Frontiers in Chemistry
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fchem.2019.00445/full
id doaj-d79ce5ac93714564b9ee0fd6c8cd7007
record_format Article
spelling doaj-d79ce5ac93714564b9ee0fd6c8cd70072020-11-24T21:21:29ZengFrontiers Media S.A.Frontiers in Chemistry2296-26462019-06-01710.3389/fchem.2019.00445445651A New Insight on Stereo-Dynamics of Penning Ionization ReactionsStefano Falcinelli0Fernando Pirani1Pietro Candori2Brunetto G. Brunetti3James M. Farrar4Franco Vecchiocattivi5Department of Civil and Environmental Engineering, University of Perugia, Perugia, ItalyDepartment of Chemistry, Biology and Biotechnologies, University of Perugia, Perugia, ItalyDepartment of Civil and Environmental Engineering, University of Perugia, Perugia, ItalyDepartment of Chemistry, Biology and Biotechnologies, University of Perugia, Perugia, ItalyDepartment of Chemistry, University of Rochester, Rochester, NY, United StatesDepartment of Civil and Environmental Engineering, University of Perugia, Perugia, ItalyRecent developments in the experimental study of Penning ionization reactions are presented here to cast light on basic aspects of the stereo-dynamics of the microscopic mechanisms involved. They concern the dependence of the reaction probability on the relative orientation of the atomic and molecular orbitals of reagents and products. The focus is on collisions between metastable Ne*(3P2, 0) atoms with other noble gas atoms or molecules, for which play a crucial role both the inner open-shell structure of Ne* and the HOMO orbitals of the partner. Their mutual orientation with respect to the intermolecular axis controls the characteristics of the intermolecular potential, which drives the collision dynamics and the reaction probability. The investigation of ionization processes of water, the prototype of hydrogenated molecules, suggested that the ground state of water ion is produced when Ne* approaches H2O perpendicularly to its plane. Conversely, collisions addressed toward the lone pair, aligned along the water C2v symmetry axis, generates electronically excited water ions. However, obtained results refer to a statistical/random orientation of the open shell ionic core of Ne*. Recently, the attention focused on the ionization of Kr or Xe by Ne*, for which we have been able to characterize the dependence on the collision energy of the branching ratio between probabilities of spin orbit resolved elementary processes. The combined analysis of measured PIES spectra suggested the occurrence of contributions from four different reaction channels, assigned to two distinct spin-orbit states of the Ne*(3P2, 0) reagent and two different spin-orbit states of the ionic M+(2P3/2, 1/2) products (M = Kr, Xe). The obtained results emphasized the reactivity change of 3P0 atoms with respect to 3P2, in producing ions in 2P3/2 and 2P1/2 sublevels, as a function of the collision energy. These findings have been assumed to arise from a critical balance of adiabatic and non-adiabatic effects that control formation and electronic rearrangement of the collision complex, respectively. From these results we are able to characterize for the first time, according to our knowledge, the state to state reaction probability for the ionization of Kr and Xe by Ne* in both 3P2 and 3P0 sublevels.https://www.frontiersin.org/article/10.3389/fchem.2019.00445/fullPenning ionizationstereo-dynamicsmetastable atomstransition stateelectron spectroscopycrossed molecular beams
collection DOAJ
language English
format Article
sources DOAJ
author Stefano Falcinelli
Fernando Pirani
Pietro Candori
Brunetto G. Brunetti
James M. Farrar
Franco Vecchiocattivi
spellingShingle Stefano Falcinelli
Fernando Pirani
Pietro Candori
Brunetto G. Brunetti
James M. Farrar
Franco Vecchiocattivi
A New Insight on Stereo-Dynamics of Penning Ionization Reactions
Frontiers in Chemistry
Penning ionization
stereo-dynamics
metastable atoms
transition state
electron spectroscopy
crossed molecular beams
author_facet Stefano Falcinelli
Fernando Pirani
Pietro Candori
Brunetto G. Brunetti
James M. Farrar
Franco Vecchiocattivi
author_sort Stefano Falcinelli
title A New Insight on Stereo-Dynamics of Penning Ionization Reactions
title_short A New Insight on Stereo-Dynamics of Penning Ionization Reactions
title_full A New Insight on Stereo-Dynamics of Penning Ionization Reactions
title_fullStr A New Insight on Stereo-Dynamics of Penning Ionization Reactions
title_full_unstemmed A New Insight on Stereo-Dynamics of Penning Ionization Reactions
title_sort new insight on stereo-dynamics of penning ionization reactions
publisher Frontiers Media S.A.
series Frontiers in Chemistry
issn 2296-2646
publishDate 2019-06-01
description Recent developments in the experimental study of Penning ionization reactions are presented here to cast light on basic aspects of the stereo-dynamics of the microscopic mechanisms involved. They concern the dependence of the reaction probability on the relative orientation of the atomic and molecular orbitals of reagents and products. The focus is on collisions between metastable Ne*(3P2, 0) atoms with other noble gas atoms or molecules, for which play a crucial role both the inner open-shell structure of Ne* and the HOMO orbitals of the partner. Their mutual orientation with respect to the intermolecular axis controls the characteristics of the intermolecular potential, which drives the collision dynamics and the reaction probability. The investigation of ionization processes of water, the prototype of hydrogenated molecules, suggested that the ground state of water ion is produced when Ne* approaches H2O perpendicularly to its plane. Conversely, collisions addressed toward the lone pair, aligned along the water C2v symmetry axis, generates electronically excited water ions. However, obtained results refer to a statistical/random orientation of the open shell ionic core of Ne*. Recently, the attention focused on the ionization of Kr or Xe by Ne*, for which we have been able to characterize the dependence on the collision energy of the branching ratio between probabilities of spin orbit resolved elementary processes. The combined analysis of measured PIES spectra suggested the occurrence of contributions from four different reaction channels, assigned to two distinct spin-orbit states of the Ne*(3P2, 0) reagent and two different spin-orbit states of the ionic M+(2P3/2, 1/2) products (M = Kr, Xe). The obtained results emphasized the reactivity change of 3P0 atoms with respect to 3P2, in producing ions in 2P3/2 and 2P1/2 sublevels, as a function of the collision energy. These findings have been assumed to arise from a critical balance of adiabatic and non-adiabatic effects that control formation and electronic rearrangement of the collision complex, respectively. From these results we are able to characterize for the first time, according to our knowledge, the state to state reaction probability for the ionization of Kr and Xe by Ne* in both 3P2 and 3P0 sublevels.
topic Penning ionization
stereo-dynamics
metastable atoms
transition state
electron spectroscopy
crossed molecular beams
url https://www.frontiersin.org/article/10.3389/fchem.2019.00445/full
work_keys_str_mv AT stefanofalcinelli anewinsightonstereodynamicsofpenningionizationreactions
AT fernandopirani anewinsightonstereodynamicsofpenningionizationreactions
AT pietrocandori anewinsightonstereodynamicsofpenningionizationreactions
AT brunettogbrunetti anewinsightonstereodynamicsofpenningionizationreactions
AT jamesmfarrar anewinsightonstereodynamicsofpenningionizationreactions
AT francovecchiocattivi anewinsightonstereodynamicsofpenningionizationreactions
AT stefanofalcinelli newinsightonstereodynamicsofpenningionizationreactions
AT fernandopirani newinsightonstereodynamicsofpenningionizationreactions
AT pietrocandori newinsightonstereodynamicsofpenningionizationreactions
AT brunettogbrunetti newinsightonstereodynamicsofpenningionizationreactions
AT jamesmfarrar newinsightonstereodynamicsofpenningionizationreactions
AT francovecchiocattivi newinsightonstereodynamicsofpenningionizationreactions
_version_ 1725999665031151616