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Photodissociation of aligned CH(3)I and C(6)H(3)F(2)I molecules probed with time-resolved Coulomb explosion imaging by site-selective extreme ultraviolet ionization
We explore time-resolved Coulomb explosion induced by intense, extreme ultraviolet (XUV) femtosecond pulses from a free-electron laser as a method to image photo-induced molecular dynamics in two molecules, iodomethane and 2,6-difluoroiodobenzene. At an excitation wavelength of 267 nm, the dominant...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Crystallographic Association
2018
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5785297/ https://www.ncbi.nlm.nih.gov/pubmed/29430482 http://dx.doi.org/10.1063/1.4998648 |
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author | Amini, Kasra Savelyev, Evgeny Brauße, Felix Berrah, Nora Bomme, Cédric Brouard, Mark Burt, Michael Christensen, Lauge Düsterer, Stefan Erk, Benjamin Höppner, Hauke Kierspel, Thomas Krecinic, Faruk Lauer, Alexandra Lee, Jason W. L. Müller, Maria Müller, Erland Mullins, Terence Redlin, Harald Schirmel, Nora Thøgersen, Jan Techert, Simone Toleikis, Sven Treusch, Rolf Trippel, Sebastian Ulmer, Anatoli Vallance, Claire Wiese, Joss Johnsson, Per Küpper, Jochen Rudenko, Artem Rouzée, Arnaud Stapelfeldt, Henrik Rolles, Daniel Boll, Rebecca |
author_facet | Amini, Kasra Savelyev, Evgeny Brauße, Felix Berrah, Nora Bomme, Cédric Brouard, Mark Burt, Michael Christensen, Lauge Düsterer, Stefan Erk, Benjamin Höppner, Hauke Kierspel, Thomas Krecinic, Faruk Lauer, Alexandra Lee, Jason W. L. Müller, Maria Müller, Erland Mullins, Terence Redlin, Harald Schirmel, Nora Thøgersen, Jan Techert, Simone Toleikis, Sven Treusch, Rolf Trippel, Sebastian Ulmer, Anatoli Vallance, Claire Wiese, Joss Johnsson, Per Küpper, Jochen Rudenko, Artem Rouzée, Arnaud Stapelfeldt, Henrik Rolles, Daniel Boll, Rebecca |
author_sort | Amini, Kasra |
collection | PubMed |
description | We explore time-resolved Coulomb explosion induced by intense, extreme ultraviolet (XUV) femtosecond pulses from a free-electron laser as a method to image photo-induced molecular dynamics in two molecules, iodomethane and 2,6-difluoroiodobenzene. At an excitation wavelength of 267 nm, the dominant reaction pathway in both molecules is neutral dissociation via cleavage of the carbon–iodine bond. This allows investigating the influence of the molecular environment on the absorption of an intense, femtosecond XUV pulse and the subsequent Coulomb explosion process. We find that the XUV probe pulse induces local inner-shell ionization of atomic iodine in dissociating iodomethane, in contrast to non-selective ionization of all photofragments in difluoroiodobenzene. The results reveal evidence of electron transfer from methyl and phenyl moieties to a multiply charged iodine ion. In addition, indications for ultrafast charge rearrangement on the phenyl radical are found, suggesting that time-resolved Coulomb explosion imaging is sensitive to the localization of charge in extended molecules. |
format | Online Article Text |
id | pubmed-5785297 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | American Crystallographic Association |
record_format | MEDLINE/PubMed |
spelling | pubmed-57852972018-02-09 Photodissociation of aligned CH(3)I and C(6)H(3)F(2)I molecules probed with time-resolved Coulomb explosion imaging by site-selective extreme ultraviolet ionization Amini, Kasra Savelyev, Evgeny Brauße, Felix Berrah, Nora Bomme, Cédric Brouard, Mark Burt, Michael Christensen, Lauge Düsterer, Stefan Erk, Benjamin Höppner, Hauke Kierspel, Thomas Krecinic, Faruk Lauer, Alexandra Lee, Jason W. L. Müller, Maria Müller, Erland Mullins, Terence Redlin, Harald Schirmel, Nora Thøgersen, Jan Techert, Simone Toleikis, Sven Treusch, Rolf Trippel, Sebastian Ulmer, Anatoli Vallance, Claire Wiese, Joss Johnsson, Per Küpper, Jochen Rudenko, Artem Rouzée, Arnaud Stapelfeldt, Henrik Rolles, Daniel Boll, Rebecca Struct Dyn ARTICLES We explore time-resolved Coulomb explosion induced by intense, extreme ultraviolet (XUV) femtosecond pulses from a free-electron laser as a method to image photo-induced molecular dynamics in two molecules, iodomethane and 2,6-difluoroiodobenzene. At an excitation wavelength of 267 nm, the dominant reaction pathway in both molecules is neutral dissociation via cleavage of the carbon–iodine bond. This allows investigating the influence of the molecular environment on the absorption of an intense, femtosecond XUV pulse and the subsequent Coulomb explosion process. We find that the XUV probe pulse induces local inner-shell ionization of atomic iodine in dissociating iodomethane, in contrast to non-selective ionization of all photofragments in difluoroiodobenzene. The results reveal evidence of electron transfer from methyl and phenyl moieties to a multiply charged iodine ion. In addition, indications for ultrafast charge rearrangement on the phenyl radical are found, suggesting that time-resolved Coulomb explosion imaging is sensitive to the localization of charge in extended molecules. American Crystallographic Association 2018-01-25 /pmc/articles/PMC5785297/ /pubmed/29430482 http://dx.doi.org/10.1063/1.4998648 Text en © 2018 Author(s). 2329-7778/2018/5(1)/014301/14 All article content, except where otherwise noted, is licensed under a Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/). |
spellingShingle | ARTICLES Amini, Kasra Savelyev, Evgeny Brauße, Felix Berrah, Nora Bomme, Cédric Brouard, Mark Burt, Michael Christensen, Lauge Düsterer, Stefan Erk, Benjamin Höppner, Hauke Kierspel, Thomas Krecinic, Faruk Lauer, Alexandra Lee, Jason W. L. Müller, Maria Müller, Erland Mullins, Terence Redlin, Harald Schirmel, Nora Thøgersen, Jan Techert, Simone Toleikis, Sven Treusch, Rolf Trippel, Sebastian Ulmer, Anatoli Vallance, Claire Wiese, Joss Johnsson, Per Küpper, Jochen Rudenko, Artem Rouzée, Arnaud Stapelfeldt, Henrik Rolles, Daniel Boll, Rebecca Photodissociation of aligned CH(3)I and C(6)H(3)F(2)I molecules probed with time-resolved Coulomb explosion imaging by site-selective extreme ultraviolet ionization |
title | Photodissociation of aligned CH(3)I and
C(6)H(3)F(2)I molecules probed with time-resolved Coulomb
explosion imaging by site-selective extreme ultraviolet ionization |
title_full | Photodissociation of aligned CH(3)I and
C(6)H(3)F(2)I molecules probed with time-resolved Coulomb
explosion imaging by site-selective extreme ultraviolet ionization |
title_fullStr | Photodissociation of aligned CH(3)I and
C(6)H(3)F(2)I molecules probed with time-resolved Coulomb
explosion imaging by site-selective extreme ultraviolet ionization |
title_full_unstemmed | Photodissociation of aligned CH(3)I and
C(6)H(3)F(2)I molecules probed with time-resolved Coulomb
explosion imaging by site-selective extreme ultraviolet ionization |
title_short | Photodissociation of aligned CH(3)I and
C(6)H(3)F(2)I molecules probed with time-resolved Coulomb
explosion imaging by site-selective extreme ultraviolet ionization |
title_sort | photodissociation of aligned ch(3)i and
c(6)h(3)f(2)i molecules probed with time-resolved coulomb
explosion imaging by site-selective extreme ultraviolet ionization |
topic | ARTICLES |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5785297/ https://www.ncbi.nlm.nih.gov/pubmed/29430482 http://dx.doi.org/10.1063/1.4998648 |
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