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Selective Preparation of a Heteroleptic Cyclometallated Ruthenium Complex Capable of Undergoing Photosubstitution of a Bidentate Ligand

Cyclometallated ruthenium complexes typically exhibit red‐shifted absorption bands and lower photolability compared to their polypyridyl analogues. They also have lower symmetry, which sometimes makes their synthesis challenging. In this work, the coordination of four N,S bidentate ligands, 3‐(methy...

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Autores principales: Cuello‐Garibo, Jordi‐Amat, James, Catriona C., Siegler, Maxime A., Hopkins, Samantha L., Bonnet, Sylvestre
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6392132/
https://www.ncbi.nlm.nih.gov/pubmed/30318782
http://dx.doi.org/10.1002/chem.201803720
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author Cuello‐Garibo, Jordi‐Amat
James, Catriona C.
Siegler, Maxime A.
Hopkins, Samantha L.
Bonnet, Sylvestre
author_facet Cuello‐Garibo, Jordi‐Amat
James, Catriona C.
Siegler, Maxime A.
Hopkins, Samantha L.
Bonnet, Sylvestre
author_sort Cuello‐Garibo, Jordi‐Amat
collection PubMed
description Cyclometallated ruthenium complexes typically exhibit red‐shifted absorption bands and lower photolability compared to their polypyridyl analogues. They also have lower symmetry, which sometimes makes their synthesis challenging. In this work, the coordination of four N,S bidentate ligands, 3‐(methylthio)propylamine (mtpa), 2‐(methylthio)ethylamine (mtea), 2‐(methylthio)ethyl‐2‐pyridine (mtep), and 2‐(methylthio)methylpyridine (mtmp), to the cyclometallated precursor [Ru(bpy)(phpy)(CH(3)CN)(2)](+) (bpy=2,2′‐bipyridine, Hphpy=2‐phenylpyridine) has been investigated, furnishing the corresponding heteroleptic complexes [Ru(bpy)(phpy)(N,S)]PF(6) ([2]PF(6)–[5]PF(6), respectively). The stereoselectivity of the synthesis strongly depended on the size of the ring formed by the Ru‐coordinated N,S ligand, with [2]PF(6) and [4]PF(6) being formed stereoselectively, but [3]PF(6) and [5]PF(6) being obtained as mixtures of inseparable isomers. The exact stereochemistry of the air‐stable complex [4]PF(6) was established by a combination of DFT, 2D NMR, and single‐crystal X‐ray crystallographic studies. Finally, [4]PF(6) was found to be photosubstitutionally active under irradiation with green light in acetonitrile, which makes it the first cyclometallated ruthenium complex capable of undergoing selective photosubstitution of a bidentate ligand.
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spelling pubmed-63921322019-03-07 Selective Preparation of a Heteroleptic Cyclometallated Ruthenium Complex Capable of Undergoing Photosubstitution of a Bidentate Ligand Cuello‐Garibo, Jordi‐Amat James, Catriona C. Siegler, Maxime A. Hopkins, Samantha L. Bonnet, Sylvestre Chemistry Full Papers Cyclometallated ruthenium complexes typically exhibit red‐shifted absorption bands and lower photolability compared to their polypyridyl analogues. They also have lower symmetry, which sometimes makes their synthesis challenging. In this work, the coordination of four N,S bidentate ligands, 3‐(methylthio)propylamine (mtpa), 2‐(methylthio)ethylamine (mtea), 2‐(methylthio)ethyl‐2‐pyridine (mtep), and 2‐(methylthio)methylpyridine (mtmp), to the cyclometallated precursor [Ru(bpy)(phpy)(CH(3)CN)(2)](+) (bpy=2,2′‐bipyridine, Hphpy=2‐phenylpyridine) has been investigated, furnishing the corresponding heteroleptic complexes [Ru(bpy)(phpy)(N,S)]PF(6) ([2]PF(6)–[5]PF(6), respectively). The stereoselectivity of the synthesis strongly depended on the size of the ring formed by the Ru‐coordinated N,S ligand, with [2]PF(6) and [4]PF(6) being formed stereoselectively, but [3]PF(6) and [5]PF(6) being obtained as mixtures of inseparable isomers. The exact stereochemistry of the air‐stable complex [4]PF(6) was established by a combination of DFT, 2D NMR, and single‐crystal X‐ray crystallographic studies. Finally, [4]PF(6) was found to be photosubstitutionally active under irradiation with green light in acetonitrile, which makes it the first cyclometallated ruthenium complex capable of undergoing selective photosubstitution of a bidentate ligand. John Wiley and Sons Inc. 2018-12-18 2019-01-24 /pmc/articles/PMC6392132/ /pubmed/30318782 http://dx.doi.org/10.1002/chem.201803720 Text en © 2018 The Authors. Published by Wiley-VCH Verlag GmbH & Co. KGaA. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Full Papers
Cuello‐Garibo, Jordi‐Amat
James, Catriona C.
Siegler, Maxime A.
Hopkins, Samantha L.
Bonnet, Sylvestre
Selective Preparation of a Heteroleptic Cyclometallated Ruthenium Complex Capable of Undergoing Photosubstitution of a Bidentate Ligand
title Selective Preparation of a Heteroleptic Cyclometallated Ruthenium Complex Capable of Undergoing Photosubstitution of a Bidentate Ligand
title_full Selective Preparation of a Heteroleptic Cyclometallated Ruthenium Complex Capable of Undergoing Photosubstitution of a Bidentate Ligand
title_fullStr Selective Preparation of a Heteroleptic Cyclometallated Ruthenium Complex Capable of Undergoing Photosubstitution of a Bidentate Ligand
title_full_unstemmed Selective Preparation of a Heteroleptic Cyclometallated Ruthenium Complex Capable of Undergoing Photosubstitution of a Bidentate Ligand
title_short Selective Preparation of a Heteroleptic Cyclometallated Ruthenium Complex Capable of Undergoing Photosubstitution of a Bidentate Ligand
title_sort selective preparation of a heteroleptic cyclometallated ruthenium complex capable of undergoing photosubstitution of a bidentate ligand
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6392132/
https://www.ncbi.nlm.nih.gov/pubmed/30318782
http://dx.doi.org/10.1002/chem.201803720
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