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How π back-donation quantitatively controls the CO stretching response in classical and non-classical metal carbonyl complexes

The CO stretching response upon coordination to a metal M to form [(L)(n)M(CO)](m) complexes (L is an auxiliary ligand) is investigated in relation to the σ donation and π back-donation components of the M–CO bond and to the electrostatic effect exerted by the ligand–metal fragment. Our analysis enc...

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Autores principales: Bistoni, Giovanni, Rampino, Sergio, Scafuri, Nicola, Ciancaleoni, Gianluca, Zuccaccia, Daniele, Belpassi, Leonardo, Tarantelli, Francesco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5975789/
https://www.ncbi.nlm.nih.gov/pubmed/29910872
http://dx.doi.org/10.1039/c5sc02971f
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author Bistoni, Giovanni
Rampino, Sergio
Scafuri, Nicola
Ciancaleoni, Gianluca
Zuccaccia, Daniele
Belpassi, Leonardo
Tarantelli, Francesco
author_facet Bistoni, Giovanni
Rampino, Sergio
Scafuri, Nicola
Ciancaleoni, Gianluca
Zuccaccia, Daniele
Belpassi, Leonardo
Tarantelli, Francesco
author_sort Bistoni, Giovanni
collection PubMed
description The CO stretching response upon coordination to a metal M to form [(L)(n)M(CO)](m) complexes (L is an auxiliary ligand) is investigated in relation to the σ donation and π back-donation components of the M–CO bond and to the electrostatic effect exerted by the ligand–metal fragment. Our analysis encompasses over 30 carbonyls, in which the relative importance of donation, back-donation and electrostatics are varied either through the ligand in a series of [(L)Au(CO)](0/+) gold(i) complexes, or through the metal in a series of anionic, neutral and cationic homoleptic carbonyls. Charge-displacement analysis is used to obtain well-defined, consistent measures of σ donation and π back-donation charges, as well as to quantify the σ and π components of CO polarization. It is found that all complexes feature a comparable charge flow of σ symmetry (both in the M–CO bonding region and in the CO fragment itself), which is therefore largely uncorrelated to CO response. By contrast, π back-donation is exceptionally variable and is found to correlate tightly with the change in CO bond distance, with the shift in CO stretching frequency, and with the extent and direction (C → O or C ← O) of the CO π polarization. As a result, we conclusively show that π back-donation can be an important bond component also in non-classical carbonyls and we provide the framework in which the spectroscopic data on coordinated CO can be used to extract quantitative information on the π donor properties of metal–ligand moieties.
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spelling pubmed-59757892018-06-15 How π back-donation quantitatively controls the CO stretching response in classical and non-classical metal carbonyl complexes Bistoni, Giovanni Rampino, Sergio Scafuri, Nicola Ciancaleoni, Gianluca Zuccaccia, Daniele Belpassi, Leonardo Tarantelli, Francesco Chem Sci Chemistry The CO stretching response upon coordination to a metal M to form [(L)(n)M(CO)](m) complexes (L is an auxiliary ligand) is investigated in relation to the σ donation and π back-donation components of the M–CO bond and to the electrostatic effect exerted by the ligand–metal fragment. Our analysis encompasses over 30 carbonyls, in which the relative importance of donation, back-donation and electrostatics are varied either through the ligand in a series of [(L)Au(CO)](0/+) gold(i) complexes, or through the metal in a series of anionic, neutral and cationic homoleptic carbonyls. Charge-displacement analysis is used to obtain well-defined, consistent measures of σ donation and π back-donation charges, as well as to quantify the σ and π components of CO polarization. It is found that all complexes feature a comparable charge flow of σ symmetry (both in the M–CO bonding region and in the CO fragment itself), which is therefore largely uncorrelated to CO response. By contrast, π back-donation is exceptionally variable and is found to correlate tightly with the change in CO bond distance, with the shift in CO stretching frequency, and with the extent and direction (C → O or C ← O) of the CO π polarization. As a result, we conclusively show that π back-donation can be an important bond component also in non-classical carbonyls and we provide the framework in which the spectroscopic data on coordinated CO can be used to extract quantitative information on the π donor properties of metal–ligand moieties. Royal Society of Chemistry 2016-02-01 2015-10-26 /pmc/articles/PMC5975789/ /pubmed/29910872 http://dx.doi.org/10.1039/c5sc02971f Text en This journal is © The Royal Society of Chemistry 2016 https://creativecommons.org/licenses/by/3.0/This article is freely available. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (CC BY 3.0)
spellingShingle Chemistry
Bistoni, Giovanni
Rampino, Sergio
Scafuri, Nicola
Ciancaleoni, Gianluca
Zuccaccia, Daniele
Belpassi, Leonardo
Tarantelli, Francesco
How π back-donation quantitatively controls the CO stretching response in classical and non-classical metal carbonyl complexes
title How π back-donation quantitatively controls the CO stretching response in classical and non-classical metal carbonyl complexes
title_full How π back-donation quantitatively controls the CO stretching response in classical and non-classical metal carbonyl complexes
title_fullStr How π back-donation quantitatively controls the CO stretching response in classical and non-classical metal carbonyl complexes
title_full_unstemmed How π back-donation quantitatively controls the CO stretching response in classical and non-classical metal carbonyl complexes
title_short How π back-donation quantitatively controls the CO stretching response in classical and non-classical metal carbonyl complexes
title_sort how π back-donation quantitatively controls the co stretching response in classical and non-classical metal carbonyl complexes
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5975789/
https://www.ncbi.nlm.nih.gov/pubmed/29910872
http://dx.doi.org/10.1039/c5sc02971f
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