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Interplay between Gold(I)-Ligand Bond Components and Hydrogen Bonding: A Combined Experimental/Computational Study

[Image: see text] The influence of weak interactions on the donation/back-donation bond components in the complex [(NHC)Au(SeU)](+) (NHC = N-heterocyclic carbene; SeU = selenourea) has been studied by coupling experimental and theoretical techniques. In particular, NMR (1)H and pulsed-field gradient...

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Autores principales: Marrazzini, Gioia, Gabbiani, Chiara, Ciancaleoni, Gianluca
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2019
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6647975/
https://www.ncbi.nlm.nih.gov/pubmed/31459403
http://dx.doi.org/10.1021/acsomega.8b03330
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author Marrazzini, Gioia
Gabbiani, Chiara
Ciancaleoni, Gianluca
author_facet Marrazzini, Gioia
Gabbiani, Chiara
Ciancaleoni, Gianluca
author_sort Marrazzini, Gioia
collection PubMed
description [Image: see text] The influence of weak interactions on the donation/back-donation bond components in the complex [(NHC)Au(SeU)](+) (NHC = N-heterocyclic carbene; SeU = selenourea) has been studied by coupling experimental and theoretical techniques. In particular, NMR (1)H and pulsed-field gradient spin-echo titrations allowed us to characterize the hydrogen bond (HB) between the −NH(2) moieties of SeU and the anions PF(6)(–) and ClO(4)(–), whereas (77)Se NMR spectroscopy allowed us to characterize the Au–Se bond. Theoretically, the Au–Se and Au–C orbital interactions have been decomposed using the natural orbital for the chemical valence framework and the bond components quantified through the charge displacement analysis. This methodology provides the quantification of the Dewar–Chatt–Duncanson (DCD) components for the Au–C and Au–Se bonds in the absence and presence of the second-sphere HB. The results presented here show that the anion has a dual mode action: it modifies the conformation of the cation by ion pairing (and this already influences the DCD components) and it induces new polarization effects that depend on the relative anion/cation relative orientation. The perchlorate polarizes SeU, enhancing the Se → Au σ donation and the Au → C back-donation and depressing the C → Au σ donation. On the contrary, the hexafluorophosphate depresses both the Se → Au and C → Au σ donations.
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spelling pubmed-66479752019-08-27 Interplay between Gold(I)-Ligand Bond Components and Hydrogen Bonding: A Combined Experimental/Computational Study Marrazzini, Gioia Gabbiani, Chiara Ciancaleoni, Gianluca ACS Omega [Image: see text] The influence of weak interactions on the donation/back-donation bond components in the complex [(NHC)Au(SeU)](+) (NHC = N-heterocyclic carbene; SeU = selenourea) has been studied by coupling experimental and theoretical techniques. In particular, NMR (1)H and pulsed-field gradient spin-echo titrations allowed us to characterize the hydrogen bond (HB) between the −NH(2) moieties of SeU and the anions PF(6)(–) and ClO(4)(–), whereas (77)Se NMR spectroscopy allowed us to characterize the Au–Se bond. Theoretically, the Au–Se and Au–C orbital interactions have been decomposed using the natural orbital for the chemical valence framework and the bond components quantified through the charge displacement analysis. This methodology provides the quantification of the Dewar–Chatt–Duncanson (DCD) components for the Au–C and Au–Se bonds in the absence and presence of the second-sphere HB. The results presented here show that the anion has a dual mode action: it modifies the conformation of the cation by ion pairing (and this already influences the DCD components) and it induces new polarization effects that depend on the relative anion/cation relative orientation. The perchlorate polarizes SeU, enhancing the Se → Au σ donation and the Au → C back-donation and depressing the C → Au σ donation. On the contrary, the hexafluorophosphate depresses both the Se → Au and C → Au σ donations. American Chemical Society 2019-01-16 /pmc/articles/PMC6647975/ /pubmed/31459403 http://dx.doi.org/10.1021/acsomega.8b03330 Text en Copyright © 2019 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Marrazzini, Gioia
Gabbiani, Chiara
Ciancaleoni, Gianluca
Interplay between Gold(I)-Ligand Bond Components and Hydrogen Bonding: A Combined Experimental/Computational Study
title Interplay between Gold(I)-Ligand Bond Components and Hydrogen Bonding: A Combined Experimental/Computational Study
title_full Interplay between Gold(I)-Ligand Bond Components and Hydrogen Bonding: A Combined Experimental/Computational Study
title_fullStr Interplay between Gold(I)-Ligand Bond Components and Hydrogen Bonding: A Combined Experimental/Computational Study
title_full_unstemmed Interplay between Gold(I)-Ligand Bond Components and Hydrogen Bonding: A Combined Experimental/Computational Study
title_short Interplay between Gold(I)-Ligand Bond Components and Hydrogen Bonding: A Combined Experimental/Computational Study
title_sort interplay between gold(i)-ligand bond components and hydrogen bonding: a combined experimental/computational study
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6647975/
https://www.ncbi.nlm.nih.gov/pubmed/31459403
http://dx.doi.org/10.1021/acsomega.8b03330
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