Mapping chemical bonding of reaction intermediates with femtosecond X-ray laser spectroscopy

We determine the pathways in the photo-dissociation reactions of Fe(CO)5 both in the gas phase and in solution by mapping the valence electronic structure of the reaction intermediates with femtosecond X-ray laser spectroscopy.

Bibliographic Details
Main Authors: Schlotter B., Rajkovic I., Radcliffe P., Quevedo W., Odelius M., Nordlund D., Meyer M., Mazza T., Leitner T., Kunnus K., Kennedy B., Josefsson I., Hennies F., Hartsock R., Grübel S., Gaffney K., Düsterer S., de Groot F., Beye M., Wernet Ph., Scholz M., Schreck S., Suljoti E., Techert S., Turner J., Weniger C., Zhang W., Föhlisch A.
Format: Article
Language:English
Published: EDP Sciences 2013-03-01
Series:EPJ Web of Conferences
Online Access:http://dx.doi.org/10.1051/epjconf/20134105025
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spelling doaj-f35907438d504ff286e4d5a7e61bd4a22021-08-02T09:19:59ZengEDP SciencesEPJ Web of Conferences2100-014X2013-03-01410502510.1051/epjconf/20134105025Mapping chemical bonding of reaction intermediates with femtosecond X-ray laser spectroscopySchlotter B.Rajkovic I.Radcliffe P.Quevedo W.Odelius M.Nordlund D.Meyer M.Mazza T.Leitner T.Kunnus K.Kennedy B.Josefsson I.Hennies F.Hartsock R.Grübel S.Gaffney K.Düsterer S.de Groot F.Beye M.Wernet Ph.Scholz M.Schreck S.Suljoti E.Techert S.Turner J.Weniger C.Zhang W.Föhlisch A.We determine the pathways in the photo-dissociation reactions of Fe(CO)5 both in the gas phase and in solution by mapping the valence electronic structure of the reaction intermediates with femtosecond X-ray laser spectroscopy. http://dx.doi.org/10.1051/epjconf/20134105025
collection DOAJ
language English
format Article
sources DOAJ
author Schlotter B.
Rajkovic I.
Radcliffe P.
Quevedo W.
Odelius M.
Nordlund D.
Meyer M.
Mazza T.
Leitner T.
Kunnus K.
Kennedy B.
Josefsson I.
Hennies F.
Hartsock R.
Grübel S.
Gaffney K.
Düsterer S.
de Groot F.
Beye M.
Wernet Ph.
Scholz M.
Schreck S.
Suljoti E.
Techert S.
Turner J.
Weniger C.
Zhang W.
Föhlisch A.
spellingShingle Schlotter B.
Rajkovic I.
Radcliffe P.
Quevedo W.
Odelius M.
Nordlund D.
Meyer M.
Mazza T.
Leitner T.
Kunnus K.
Kennedy B.
Josefsson I.
Hennies F.
Hartsock R.
Grübel S.
Gaffney K.
Düsterer S.
de Groot F.
Beye M.
Wernet Ph.
Scholz M.
Schreck S.
Suljoti E.
Techert S.
Turner J.
Weniger C.
Zhang W.
Föhlisch A.
Mapping chemical bonding of reaction intermediates with femtosecond X-ray laser spectroscopy
EPJ Web of Conferences
author_facet Schlotter B.
Rajkovic I.
Radcliffe P.
Quevedo W.
Odelius M.
Nordlund D.
Meyer M.
Mazza T.
Leitner T.
Kunnus K.
Kennedy B.
Josefsson I.
Hennies F.
Hartsock R.
Grübel S.
Gaffney K.
Düsterer S.
de Groot F.
Beye M.
Wernet Ph.
Scholz M.
Schreck S.
Suljoti E.
Techert S.
Turner J.
Weniger C.
Zhang W.
Föhlisch A.
author_sort Schlotter B.
title Mapping chemical bonding of reaction intermediates with femtosecond X-ray laser spectroscopy
title_short Mapping chemical bonding of reaction intermediates with femtosecond X-ray laser spectroscopy
title_full Mapping chemical bonding of reaction intermediates with femtosecond X-ray laser spectroscopy
title_fullStr Mapping chemical bonding of reaction intermediates with femtosecond X-ray laser spectroscopy
title_full_unstemmed Mapping chemical bonding of reaction intermediates with femtosecond X-ray laser spectroscopy
title_sort mapping chemical bonding of reaction intermediates with femtosecond x-ray laser spectroscopy
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2013-03-01
description We determine the pathways in the photo-dissociation reactions of Fe(CO)5 both in the gas phase and in solution by mapping the valence electronic structure of the reaction intermediates with femtosecond X-ray laser spectroscopy.
url http://dx.doi.org/10.1051/epjconf/20134105025
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