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Preparation and Degradation of Rhodium and Iridium Diolefin Catalysts for the Acceptorless and Base-Free Dehydrogenation of Secondary Alcohols

[Image: see text] Rhodium and iridium diolefin catalysts for the acceptorless and base-free dehydrogenation of secondary alcohols have been prepared, and their degradation has been investigated, during the study of the reactivity of the dimers [M(μ-Cl)(η(4)-C(8)H(12))](2) (M = Rh (1), Ir (2)) and [M...

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Autores principales: Buil, María L., Collado, Alba, Esteruelas, Miguel A., Gómez-Gallego, Mar, Izquierdo, Susana, Nicasio, Antonio I., Oñate, Enrique, Sierra, Miguel A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9180741/
https://www.ncbi.nlm.nih.gov/pubmed/35692372
http://dx.doi.org/10.1021/acs.organomet.1c00068
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author Buil, María L.
Collado, Alba
Esteruelas, Miguel A.
Gómez-Gallego, Mar
Izquierdo, Susana
Nicasio, Antonio I.
Oñate, Enrique
Sierra, Miguel A.
author_facet Buil, María L.
Collado, Alba
Esteruelas, Miguel A.
Gómez-Gallego, Mar
Izquierdo, Susana
Nicasio, Antonio I.
Oñate, Enrique
Sierra, Miguel A.
author_sort Buil, María L.
collection PubMed
description [Image: see text] Rhodium and iridium diolefin catalysts for the acceptorless and base-free dehydrogenation of secondary alcohols have been prepared, and their degradation has been investigated, during the study of the reactivity of the dimers [M(μ-Cl)(η(4)-C(8)H(12))](2) (M = Rh (1), Ir (2)) and [M(μ-OH)(η(4)-C(8)H(12))](2) (M = Rh (3), Ir (4)) with 1,3-bis(6′-methyl-2′-pyridylimino)isoindoline (HBMePHI). Complex 1 reacts with HBMePHI, in dichloromethane, to afford equilibrium mixtures of 1, the mononuclear derivative RhCl(η(4)-C(8)H(12)){κ(1)-N(py)-(HBMePHI)} (5), and the binuclear species [RhCl(η(4)-C(8)H(12))](2){μ-N(py),N(py)-(HBMePHI)} (6). Under the same conditions, complex 2 affords the iridium counterparts IrCl(η(4)-C(8)H(12)){κ(1)-N(py)-(HBMePHI)} (7) and [IrCl(η(4)-C(8)H(12))](2){μ-N(py),N(py)-(HBMePHI)} (8). In contrast to chloride, one of the hydroxide groups of 3 and 4 promotes the deprotonation of HBMePHI to give [M(η(4)-C(8)H(12))](2)(μ-OH){μ-N(py),N(iso)-(BMePHI)} (M = Rh (9), Ir (10)), which are efficient precatalysts for the acceptorless and base-free dehydrogenation of secondary alcohols. In the presence of KO(t)Bu, the [BMePHI](−) ligand undergoes three different degradations: alcoholysis of an exocyclic isoindoline-N double bond, alcoholysis of a pyridyl-N bond, and opening of the five-membered ring of the isoindoline core.
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spelling pubmed-91807412022-06-10 Preparation and Degradation of Rhodium and Iridium Diolefin Catalysts for the Acceptorless and Base-Free Dehydrogenation of Secondary Alcohols Buil, María L. Collado, Alba Esteruelas, Miguel A. Gómez-Gallego, Mar Izquierdo, Susana Nicasio, Antonio I. Oñate, Enrique Sierra, Miguel A. Organometallics [Image: see text] Rhodium and iridium diolefin catalysts for the acceptorless and base-free dehydrogenation of secondary alcohols have been prepared, and their degradation has been investigated, during the study of the reactivity of the dimers [M(μ-Cl)(η(4)-C(8)H(12))](2) (M = Rh (1), Ir (2)) and [M(μ-OH)(η(4)-C(8)H(12))](2) (M = Rh (3), Ir (4)) with 1,3-bis(6′-methyl-2′-pyridylimino)isoindoline (HBMePHI). Complex 1 reacts with HBMePHI, in dichloromethane, to afford equilibrium mixtures of 1, the mononuclear derivative RhCl(η(4)-C(8)H(12)){κ(1)-N(py)-(HBMePHI)} (5), and the binuclear species [RhCl(η(4)-C(8)H(12))](2){μ-N(py),N(py)-(HBMePHI)} (6). Under the same conditions, complex 2 affords the iridium counterparts IrCl(η(4)-C(8)H(12)){κ(1)-N(py)-(HBMePHI)} (7) and [IrCl(η(4)-C(8)H(12))](2){μ-N(py),N(py)-(HBMePHI)} (8). In contrast to chloride, one of the hydroxide groups of 3 and 4 promotes the deprotonation of HBMePHI to give [M(η(4)-C(8)H(12))](2)(μ-OH){μ-N(py),N(iso)-(BMePHI)} (M = Rh (9), Ir (10)), which are efficient precatalysts for the acceptorless and base-free dehydrogenation of secondary alcohols. In the presence of KO(t)Bu, the [BMePHI](−) ligand undergoes three different degradations: alcoholysis of an exocyclic isoindoline-N double bond, alcoholysis of a pyridyl-N bond, and opening of the five-membered ring of the isoindoline core. American Chemical Society 2021-03-31 2021-04-12 /pmc/articles/PMC9180741/ /pubmed/35692372 http://dx.doi.org/10.1021/acs.organomet.1c00068 Text en © 2021 American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Buil, María L.
Collado, Alba
Esteruelas, Miguel A.
Gómez-Gallego, Mar
Izquierdo, Susana
Nicasio, Antonio I.
Oñate, Enrique
Sierra, Miguel A.
Preparation and Degradation of Rhodium and Iridium Diolefin Catalysts for the Acceptorless and Base-Free Dehydrogenation of Secondary Alcohols
title Preparation and Degradation of Rhodium and Iridium Diolefin Catalysts for the Acceptorless and Base-Free Dehydrogenation of Secondary Alcohols
title_full Preparation and Degradation of Rhodium and Iridium Diolefin Catalysts for the Acceptorless and Base-Free Dehydrogenation of Secondary Alcohols
title_fullStr Preparation and Degradation of Rhodium and Iridium Diolefin Catalysts for the Acceptorless and Base-Free Dehydrogenation of Secondary Alcohols
title_full_unstemmed Preparation and Degradation of Rhodium and Iridium Diolefin Catalysts for the Acceptorless and Base-Free Dehydrogenation of Secondary Alcohols
title_short Preparation and Degradation of Rhodium and Iridium Diolefin Catalysts for the Acceptorless and Base-Free Dehydrogenation of Secondary Alcohols
title_sort preparation and degradation of rhodium and iridium diolefin catalysts for the acceptorless and base-free dehydrogenation of secondary alcohols
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9180741/
https://www.ncbi.nlm.nih.gov/pubmed/35692372
http://dx.doi.org/10.1021/acs.organomet.1c00068
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