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Valence-shell photoelectron circular dichroism of ruthenium(iii)-tris-(acetylacetonato) gas-phase enantiomers

Authors :
Monika Srebro-Hooper
Aurora Ponzi
Jeanne Crassous
Nidal Saleh
Gustavo A. Garcia
Jochen Autschbach
Laurent Nahon
Piero Decleva
Benoît Darquié
Sean Tokunaga
Université Sorbonne Paris Nord
Laboratoire de Physique des Lasers (LPL)
Université Paris 13 (UP13)-Centre National de la Recherche Scientifique (CNRS)-Université Sorbonne Paris Nord
Synthèse Caractérisation Analyse de la Matière (ScanMAT)
Université de Rennes (UR)-Institut de Chimie du CNRS (INC)-Centre National de la Recherche Scientifique (CNRS)
Institut des Sciences Chimiques de Rennes (ISCR)
Université de Rennes (UR)-Institut National des Sciences Appliquées - Rennes (INSA Rennes)
Institut National des Sciences Appliquées (INSA)-Institut National des Sciences Appliquées (INSA)-Ecole Nationale Supérieure de Chimie de Rennes (ENSCR)-Institut de Chimie du CNRS (INC)-Centre National de la Recherche Scientifique (CNRS)
Université de Genève = University of Geneva (UNIGE)
Uniwersytet Jagielloński w Krakowie = Jagiellonian University (UJ)
Università degli studi di Trieste = University of Trieste
State University of New York (SUNY)
Synchrotron SOLEIL (SSOLEIL)
Centre National de la Recherche Scientifique (CNRS)
Foundation for Polish Science Foundation for Polish Science European Commission
European Regional Development Fund European Commission
National Science Foundation National Science Foundation (NSF) [CHE-1855470]
Agence Nationale de la Recherche (ANR) French National Research Agency (ANR) [ANR-15-CE30-0005-01]
ANR-15-CE30-0005,PVCM,Violation de la parité dans les molécules chirales(2015)
Centre National de la Recherche Scientifique (CNRS)-Université Sorbonne Paris Nord
Centre National de la Recherche Scientifique (CNRS)-Université de Rennes 1 (UR1)
Université de Rennes (UNIV-RENNES)-Université de Rennes (UNIV-RENNES)-Institut de Chimie du CNRS (INC)
Centre National de la Recherche Scientifique (CNRS)-Institut de Chimie du CNRS (INC)-Université de Rennes 1 (UR1)
Université de Rennes (UNIV-RENNES)-Université de Rennes (UNIV-RENNES)-Ecole Nationale Supérieure de Chimie de Rennes (ENSCR)-Institut National des Sciences Appliquées - Rennes (INSA Rennes)
Institut National des Sciences Appliquées (INSA)-Université de Rennes (UNIV-RENNES)-Institut National des Sciences Appliquées (INSA)
University of Geneva [Switzerland]
Università degli studi di Trieste
Université de Rennes 1 (UR1)
Université de Rennes (UNIV-RENNES)-Université de Rennes (UNIV-RENNES)-Institut de Chimie du CNRS (INC)-Centre National de la Recherche Scientifique (CNRS)
Source :
Physical Chemistry Chemical Physics, Physical Chemistry Chemical Physics, 2021, 23 (42), pp.24140-24153. ⟨10.1039/d1cp02921e⟩, Physical Chemistry Chemical Physics, Royal Society of Chemistry, 2021, 23, pp.24140-24153. ⟨10.1039/d1cp02921e⟩
Publication Year :
2021

Abstract

International audience; Chiral transition-metal complexes are of interest in many fields ranging from asymmetric catalysis and molecular materials science to optoelectronic applications or fundamental physics including parity violation effects. We present here a combined theoretical and experimental investigation of gas-phase valence-shell photoelectron circular dichroism (PECD) on the challenging open-shell ruthenium(iii)-tris-(acetylacetonato) complex, Ru(acac)(3). Enantiomerically pure Delta- or ?-Ru(acac)(3), characterized by electronic circular dichroism (ECD), were vaporized and adiabatically expanded to produce a supersonic beam and photoionized by circularly-polarized VUV light from the DESIRS beamline at Synchrotron SOLEIL. Photoelectron spectroscopy (PES) and PECD experiments were conducted using a double imaging electron/ion coincidence spectrometer, and compared to density functional theory (DFT) and time-dependent DFT (TDDFT) calculations. The open-shell character of Ru(acac)(3), which is not taken into account in our DFT approach, is expected to give rise to a wide multiplet structure, which is not resolved in our PES signals but whose presence might be inferred from the additional striking features observed in the PECD curves. Nevertheless, the DFT-based assignment of the electronic bands leads to the characterisation of the ionized orbitals. In line with other recent works, the results confirm that PECD persists independently on the localization and/or on the achiral or chiral nature of the initial orbital, but is rather a probe of the molecular potential as a whole. Overall, the measured PECD signals on Ru(acac)(3), a system exhibiting D-3 propeller-type chirality, are of similar magnitude compared to those on asymmetric-carbon-based chiral organic molecules which constitute the vast majority of species investigated so far, thus suggesting that PECD is a universal mechanism, inherent to any type of chirality.

Details

Language :
English
ISSN :
14639076 and 14639084
Database :
OpenAIRE
Journal :
Physical Chemistry Chemical Physics, Physical Chemistry Chemical Physics, 2021, 23 (42), pp.24140-24153. ⟨10.1039/d1cp02921e⟩, Physical Chemistry Chemical Physics, Royal Society of Chemistry, 2021, 23, pp.24140-24153. ⟨10.1039/d1cp02921e⟩
Accession number :
edsair.doi.dedup.....701de1f00bde118c7deb18b6b4846a7e
Full Text :
https://doi.org/10.1039/d1cp02921e⟩