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Magnesium–halobenzene bonding: mapping the halogen sigma-hole with a Lewis-acidic complex

Complexes of the Lewis base-free cations ((Me)BDI)Mg(+) and ((tBu)BDI)Mg(+) with Ph–X ligands (X = F, Cl, Br, I) have been studied ((Me)BDI = HC[C(Me)N-DIPP](2) and (tBu)BDI = HC[C(tBu)N-DIPP](2); DIPP = 2,6-diisopropylphenyl). For the smaller β-diketiminate ligand ((Me)BDI) only complexes with PhF...

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Autores principales: Friedrich, Alexander, Pahl, Jürgen, Eyselein, Jonathan, Langer, Jens, van Eikema Hommes, Nico, Görling, Andreas, Harder, Sjoerd
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8179342/
https://www.ncbi.nlm.nih.gov/pubmed/34164006
http://dx.doi.org/10.1039/d0sc06321e
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author Friedrich, Alexander
Pahl, Jürgen
Eyselein, Jonathan
Langer, Jens
van Eikema Hommes, Nico
Görling, Andreas
Harder, Sjoerd
author_facet Friedrich, Alexander
Pahl, Jürgen
Eyselein, Jonathan
Langer, Jens
van Eikema Hommes, Nico
Görling, Andreas
Harder, Sjoerd
author_sort Friedrich, Alexander
collection PubMed
description Complexes of the Lewis base-free cations ((Me)BDI)Mg(+) and ((tBu)BDI)Mg(+) with Ph–X ligands (X = F, Cl, Br, I) have been studied ((Me)BDI = HC[C(Me)N-DIPP](2) and (tBu)BDI = HC[C(tBu)N-DIPP](2); DIPP = 2,6-diisopropylphenyl). For the smaller β-diketiminate ligand ((Me)BDI) only complexes with PhF could be isolated. Heavier Ph–X ligands could not compete with bonding of Mg to the weakly coordinating anion B(C(6)F(5))(4)(−). For the cations with the bulkier (tBu)BDI ligand, the full series of halobenzene complexes was structurally characterized. Crystal structures show that the Mg⋯X–Ph angle strongly decreases with the size of X: F 139.1°, Cl 101.4°, Br 97.7°, I 95.1°. This trend, which is supported by DFT calculations, can be explained with the σ-hole which increases from F to I. Charge calculation and Atoms-In-Molecules analyses show that Mg⋯F–Ph bonding originates from electrostatic attraction between Mg(2+) and the very polar C(δ+)–F(δ−) bond. For the heavier halobenzenes, polarization of the halogen atom becomes increasingly important (Cl < Br < I). Complexation with Mg leads in all cases to significant Ph–X bond activation and elongation. This unusual coordination of halogenated species to early main group metals is therefore relevant to C–X bond breaking.
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spelling pubmed-81793422021-06-22 Magnesium–halobenzene bonding: mapping the halogen sigma-hole with a Lewis-acidic complex Friedrich, Alexander Pahl, Jürgen Eyselein, Jonathan Langer, Jens van Eikema Hommes, Nico Görling, Andreas Harder, Sjoerd Chem Sci Chemistry Complexes of the Lewis base-free cations ((Me)BDI)Mg(+) and ((tBu)BDI)Mg(+) with Ph–X ligands (X = F, Cl, Br, I) have been studied ((Me)BDI = HC[C(Me)N-DIPP](2) and (tBu)BDI = HC[C(tBu)N-DIPP](2); DIPP = 2,6-diisopropylphenyl). For the smaller β-diketiminate ligand ((Me)BDI) only complexes with PhF could be isolated. Heavier Ph–X ligands could not compete with bonding of Mg to the weakly coordinating anion B(C(6)F(5))(4)(−). For the cations with the bulkier (tBu)BDI ligand, the full series of halobenzene complexes was structurally characterized. Crystal structures show that the Mg⋯X–Ph angle strongly decreases with the size of X: F 139.1°, Cl 101.4°, Br 97.7°, I 95.1°. This trend, which is supported by DFT calculations, can be explained with the σ-hole which increases from F to I. Charge calculation and Atoms-In-Molecules analyses show that Mg⋯F–Ph bonding originates from electrostatic attraction between Mg(2+) and the very polar C(δ+)–F(δ−) bond. For the heavier halobenzenes, polarization of the halogen atom becomes increasingly important (Cl < Br < I). Complexation with Mg leads in all cases to significant Ph–X bond activation and elongation. This unusual coordination of halogenated species to early main group metals is therefore relevant to C–X bond breaking. The Royal Society of Chemistry 2020-12-16 /pmc/articles/PMC8179342/ /pubmed/34164006 http://dx.doi.org/10.1039/d0sc06321e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Friedrich, Alexander
Pahl, Jürgen
Eyselein, Jonathan
Langer, Jens
van Eikema Hommes, Nico
Görling, Andreas
Harder, Sjoerd
Magnesium–halobenzene bonding: mapping the halogen sigma-hole with a Lewis-acidic complex
title Magnesium–halobenzene bonding: mapping the halogen sigma-hole with a Lewis-acidic complex
title_full Magnesium–halobenzene bonding: mapping the halogen sigma-hole with a Lewis-acidic complex
title_fullStr Magnesium–halobenzene bonding: mapping the halogen sigma-hole with a Lewis-acidic complex
title_full_unstemmed Magnesium–halobenzene bonding: mapping the halogen sigma-hole with a Lewis-acidic complex
title_short Magnesium–halobenzene bonding: mapping the halogen sigma-hole with a Lewis-acidic complex
title_sort magnesium–halobenzene bonding: mapping the halogen sigma-hole with a lewis-acidic complex
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8179342/
https://www.ncbi.nlm.nih.gov/pubmed/34164006
http://dx.doi.org/10.1039/d0sc06321e
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