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The Halogen Bond in Weakly Bonded Complexes and the Consequences for Aromaticity and Spin-Orbit Coupling

The halogen bond complexes CF [Formula: see text] X⋯Y and C [Formula: see text] F [Formula: see text] X⋯Y, with Y = furan, thiophene, selenophene and X = Cl, Br, I, have been studied by using DFT and CCSD(T) in order to understand which factors govern the interaction between the halogen atom X and t...

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Autores principales: Cunha, Ana V., Havenith, Remco W. A., van Gog, Jari, De Vleeschouwer, Freija, De Proft, Frank, Herrebout, Wouter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9865902/
https://www.ncbi.nlm.nih.gov/pubmed/36677828
http://dx.doi.org/10.3390/molecules28020772
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author Cunha, Ana V.
Havenith, Remco W. A.
van Gog, Jari
De Vleeschouwer, Freija
De Proft, Frank
Herrebout, Wouter
author_facet Cunha, Ana V.
Havenith, Remco W. A.
van Gog, Jari
De Vleeschouwer, Freija
De Proft, Frank
Herrebout, Wouter
author_sort Cunha, Ana V.
collection PubMed
description The halogen bond complexes CF [Formula: see text] X⋯Y and C [Formula: see text] F [Formula: see text] X⋯Y, with Y = furan, thiophene, selenophene and X = Cl, Br, I, have been studied by using DFT and CCSD(T) in order to understand which factors govern the interaction between the halogen atom X and the aromatic ring. We found that PBE0-dDsC/QZ4P gives an adequate description of the interaction energies in these complexes, compared to CCSD(T) and experimental results. The interaction between the halogen atom X and the [Formula: see text]-bonds in perpendicular orientation is stronger than the interaction with the in-plane lone pairs of the heteroatom of the aromatic cycle. The strength of the interaction follows the trend Cl < Br < I; the chalcogenide in the aromatic ring nor the hybridization of the C–X bond play a decisive role. The energy decomposition analysis shows that the interaction energy is dominated by all three contributions, viz., the electrostatic, orbital, and dispersion interactions: not one factor dominates the interaction energy. The aromaticity of the ring is undisturbed upon halogen bond formation: the [Formula: see text]-ring current remains equally strong and diatropic in the complex as it is for the free aromatic ring. However, the spin-orbit coupling between the singlet and triplet [Formula: see text] states is increased upon halogen bond formation and a faster intersystem crossing between these states is therefore expected.
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spelling pubmed-98659022023-01-22 The Halogen Bond in Weakly Bonded Complexes and the Consequences for Aromaticity and Spin-Orbit Coupling Cunha, Ana V. Havenith, Remco W. A. van Gog, Jari De Vleeschouwer, Freija De Proft, Frank Herrebout, Wouter Molecules Article The halogen bond complexes CF [Formula: see text] X⋯Y and C [Formula: see text] F [Formula: see text] X⋯Y, with Y = furan, thiophene, selenophene and X = Cl, Br, I, have been studied by using DFT and CCSD(T) in order to understand which factors govern the interaction between the halogen atom X and the aromatic ring. We found that PBE0-dDsC/QZ4P gives an adequate description of the interaction energies in these complexes, compared to CCSD(T) and experimental results. The interaction between the halogen atom X and the [Formula: see text]-bonds in perpendicular orientation is stronger than the interaction with the in-plane lone pairs of the heteroatom of the aromatic cycle. The strength of the interaction follows the trend Cl < Br < I; the chalcogenide in the aromatic ring nor the hybridization of the C–X bond play a decisive role. The energy decomposition analysis shows that the interaction energy is dominated by all three contributions, viz., the electrostatic, orbital, and dispersion interactions: not one factor dominates the interaction energy. The aromaticity of the ring is undisturbed upon halogen bond formation: the [Formula: see text]-ring current remains equally strong and diatropic in the complex as it is for the free aromatic ring. However, the spin-orbit coupling between the singlet and triplet [Formula: see text] states is increased upon halogen bond formation and a faster intersystem crossing between these states is therefore expected. MDPI 2023-01-12 /pmc/articles/PMC9865902/ /pubmed/36677828 http://dx.doi.org/10.3390/molecules28020772 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cunha, Ana V.
Havenith, Remco W. A.
van Gog, Jari
De Vleeschouwer, Freija
De Proft, Frank
Herrebout, Wouter
The Halogen Bond in Weakly Bonded Complexes and the Consequences for Aromaticity and Spin-Orbit Coupling
title The Halogen Bond in Weakly Bonded Complexes and the Consequences for Aromaticity and Spin-Orbit Coupling
title_full The Halogen Bond in Weakly Bonded Complexes and the Consequences for Aromaticity and Spin-Orbit Coupling
title_fullStr The Halogen Bond in Weakly Bonded Complexes and the Consequences for Aromaticity and Spin-Orbit Coupling
title_full_unstemmed The Halogen Bond in Weakly Bonded Complexes and the Consequences for Aromaticity and Spin-Orbit Coupling
title_short The Halogen Bond in Weakly Bonded Complexes and the Consequences for Aromaticity and Spin-Orbit Coupling
title_sort halogen bond in weakly bonded complexes and the consequences for aromaticity and spin-orbit coupling
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9865902/
https://www.ncbi.nlm.nih.gov/pubmed/36677828
http://dx.doi.org/10.3390/molecules28020772
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