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C(acyl)–C(sp(2)) and C(sp(2))–C(sp(2)) Suzuki–Miyaura cross-coupling reactions using nitrile-functionalized NHC palladium complexes

Application of N-heterocyclic carbene (NHC) palladium complexes has been successful for the modulation of C–C coupling reactions. For this purpose, a series of azolium salts (1a–f) including benzothiazolium, benzimidazolium, and imidazolium, bearing a CN-substituted benzyl moiety, and their (NHC)(2)...

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Autores principales: Çakır, Sinem, Kavukcu, Serdar Batıkan, Karabıyık, Hande, Rethinam, Senthil, Türkmen, Hayati
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9043785/
https://www.ncbi.nlm.nih.gov/pubmed/35498080
http://dx.doi.org/10.1039/d1ra07231e
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author Çakır, Sinem
Kavukcu, Serdar Batıkan
Karabıyık, Hande
Rethinam, Senthil
Türkmen, Hayati
author_facet Çakır, Sinem
Kavukcu, Serdar Batıkan
Karabıyık, Hande
Rethinam, Senthil
Türkmen, Hayati
author_sort Çakır, Sinem
collection PubMed
description Application of N-heterocyclic carbene (NHC) palladium complexes has been successful for the modulation of C–C coupling reactions. For this purpose, a series of azolium salts (1a–f) including benzothiazolium, benzimidazolium, and imidazolium, bearing a CN-substituted benzyl moiety, and their (NHC)(2)PdBr(2) (2a–c) and PEPPSI-type palladium (3b–f) complexes have been systematically prepared to catalyse acylative Suzuki–Miyaura coupling reaction of acyl chlorides with arylboronic acids to form benzophenone derivatives in the presence of potassium carbonate as a base and to catalyse the traditional Suzuki–Miyaura coupling reaction of bromobenzene with arylboronic acids to form biaryls. All the synthesized compounds were fully characterized by Fourier Transform Infrared (FTIR), and (1)H and (13)C NMR spectroscopies. X-ray diffraction studies on single crystals of 3c, 3e and 3f prove the square planar geometry. Scanning Electron Microscopy (SEM), energy dispersive X-ray spectroscopy (EDS), metal mapping analyses and thermal gravimetric analysis (TGA) were performed to get further insights into the mechanism of the Suzuki–Miyaura cross coupling reactions. Mechanistic studies have revealed that the stability and coordination of the complexes by the CN group are achieved by the removal of pyridine from the complex in catalytic cycles. The presence of the CN group in the (NHC)Pd complexes significantly increased the catalytic activities for both reactions.
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spelling pubmed-90437852022-04-28 C(acyl)–C(sp(2)) and C(sp(2))–C(sp(2)) Suzuki–Miyaura cross-coupling reactions using nitrile-functionalized NHC palladium complexes Çakır, Sinem Kavukcu, Serdar Batıkan Karabıyık, Hande Rethinam, Senthil Türkmen, Hayati RSC Adv Chemistry Application of N-heterocyclic carbene (NHC) palladium complexes has been successful for the modulation of C–C coupling reactions. For this purpose, a series of azolium salts (1a–f) including benzothiazolium, benzimidazolium, and imidazolium, bearing a CN-substituted benzyl moiety, and their (NHC)(2)PdBr(2) (2a–c) and PEPPSI-type palladium (3b–f) complexes have been systematically prepared to catalyse acylative Suzuki–Miyaura coupling reaction of acyl chlorides with arylboronic acids to form benzophenone derivatives in the presence of potassium carbonate as a base and to catalyse the traditional Suzuki–Miyaura coupling reaction of bromobenzene with arylboronic acids to form biaryls. All the synthesized compounds were fully characterized by Fourier Transform Infrared (FTIR), and (1)H and (13)C NMR spectroscopies. X-ray diffraction studies on single crystals of 3c, 3e and 3f prove the square planar geometry. Scanning Electron Microscopy (SEM), energy dispersive X-ray spectroscopy (EDS), metal mapping analyses and thermal gravimetric analysis (TGA) were performed to get further insights into the mechanism of the Suzuki–Miyaura cross coupling reactions. Mechanistic studies have revealed that the stability and coordination of the complexes by the CN group are achieved by the removal of pyridine from the complex in catalytic cycles. The presence of the CN group in the (NHC)Pd complexes significantly increased the catalytic activities for both reactions. The Royal Society of Chemistry 2021-11-23 /pmc/articles/PMC9043785/ /pubmed/35498080 http://dx.doi.org/10.1039/d1ra07231e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Çakır, Sinem
Kavukcu, Serdar Batıkan
Karabıyık, Hande
Rethinam, Senthil
Türkmen, Hayati
C(acyl)–C(sp(2)) and C(sp(2))–C(sp(2)) Suzuki–Miyaura cross-coupling reactions using nitrile-functionalized NHC palladium complexes
title C(acyl)–C(sp(2)) and C(sp(2))–C(sp(2)) Suzuki–Miyaura cross-coupling reactions using nitrile-functionalized NHC palladium complexes
title_full C(acyl)–C(sp(2)) and C(sp(2))–C(sp(2)) Suzuki–Miyaura cross-coupling reactions using nitrile-functionalized NHC palladium complexes
title_fullStr C(acyl)–C(sp(2)) and C(sp(2))–C(sp(2)) Suzuki–Miyaura cross-coupling reactions using nitrile-functionalized NHC palladium complexes
title_full_unstemmed C(acyl)–C(sp(2)) and C(sp(2))–C(sp(2)) Suzuki–Miyaura cross-coupling reactions using nitrile-functionalized NHC palladium complexes
title_short C(acyl)–C(sp(2)) and C(sp(2))–C(sp(2)) Suzuki–Miyaura cross-coupling reactions using nitrile-functionalized NHC palladium complexes
title_sort c(acyl)–c(sp(2)) and c(sp(2))–c(sp(2)) suzuki–miyaura cross-coupling reactions using nitrile-functionalized nhc palladium complexes
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9043785/
https://www.ncbi.nlm.nih.gov/pubmed/35498080
http://dx.doi.org/10.1039/d1ra07231e
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