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Dipyrromethane‐Based PGeP Pincer Germyl Rhodium Complexes

A family of germyl rhodium complexes derived from the PGeP germylene 2,2’‐bis(di‐isopropylphosphanylmethyl)‐5,5’‐dimethyldipyrromethane‐1,1’‐diylgermanium(II), Ge(pyrmP( i )Pr(2))(2)CMe(2) (1), has been prepared. Germylene 1 reacted readily with [RhCl(PPh(3))(3)] and [RhCl(cod)(PPh(3))] (cod=1,5‐cyc...

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Autores principales: Cabeza, Javier A., Fernández‐Colinas, José M., García‐Álvarez, Joaquín, García‐Álvarez, Pablo, Laglera‐Gándara, Carlos J., Ramos‐Martín, Marina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9545308/
https://www.ncbi.nlm.nih.gov/pubmed/35612568
http://dx.doi.org/10.1002/chem.202200847
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author Cabeza, Javier A.
Fernández‐Colinas, José M.
García‐Álvarez, Joaquín
García‐Álvarez, Pablo
Laglera‐Gándara, Carlos J.
Ramos‐Martín, Marina
author_facet Cabeza, Javier A.
Fernández‐Colinas, José M.
García‐Álvarez, Joaquín
García‐Álvarez, Pablo
Laglera‐Gándara, Carlos J.
Ramos‐Martín, Marina
author_sort Cabeza, Javier A.
collection PubMed
description A family of germyl rhodium complexes derived from the PGeP germylene 2,2’‐bis(di‐isopropylphosphanylmethyl)‐5,5’‐dimethyldipyrromethane‐1,1’‐diylgermanium(II), Ge(pyrmP( i )Pr(2))(2)CMe(2) (1), has been prepared. Germylene 1 reacted readily with [RhCl(PPh(3))(3)] and [RhCl(cod)(PPh(3))] (cod=1,5‐cyclooctadiene) to give, in both cases, the PGeP‐pincer chloridogermyl rhodium(I) derivative [Rh{κ(3) P,Ge,P‐GeCl(pyrmP( i )Pr(2))(2)CMe(2)}(PPh(3))] (2). Similarly, the reaction of 1 with [RhCl(cod)(MeCN)] afforded [Rh{κ(3) P,Ge,P‐GeCl(pyrmP( i )Pr(2))(2)CMe(2)}(MeCN)] (3). The methoxidogermyl and methylgermyl rhodium(I) complexes [Rh{κ(3) P,Ge,P‐GeR(pyrmP( i )Pr(2))(2)CMe(2)}(PPh(3))] (R=OMe, 4; Me, 5) were prepared by treating complex 2 with LiOMe and LiMe, respectively. Complex 5 readily reacted with CO to give the carbonyl rhodium(I) derivative [Rh{κ(3) P,Ge,P‐GeR(pyrmP( i )Pr(2))(2)CMe(2)}(CO)] (6), with HCl, HSnPh(3) and Ph(2)S(2) rendering the pentacoordinate methylgermyl rhodium(III) complexes [RhHX{κ(3) P,Ge,P‐GeMe(pyrmP( i )Pr(2))(2)CMe(2)}] (X=Cl, 7; SnPh(3), 8) and [Rh(SPh)(2){κ(3) P,Ge,P‐GeMe(pyrmP( i )Pr(2))(2)CMe(2)}] (9), respectively, and with H(2) to give the hexacoordinate derivative [RhH(2){κ(3) P,Ge,P‐GeMe(pyrmP( i )Pr(2))(2)CMe(2)}(PPh(3))] (10). Complexes 3 and 5 are catalyst precursors for the hydroboration of styrene, 4‐vinyltoluene and 4‐vinylfluorobenzene with catecholborane under mild conditions.
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spelling pubmed-95453082022-10-14 Dipyrromethane‐Based PGeP Pincer Germyl Rhodium Complexes Cabeza, Javier A. Fernández‐Colinas, José M. García‐Álvarez, Joaquín García‐Álvarez, Pablo Laglera‐Gándara, Carlos J. Ramos‐Martín, Marina Chemistry Research Articles A family of germyl rhodium complexes derived from the PGeP germylene 2,2’‐bis(di‐isopropylphosphanylmethyl)‐5,5’‐dimethyldipyrromethane‐1,1’‐diylgermanium(II), Ge(pyrmP( i )Pr(2))(2)CMe(2) (1), has been prepared. Germylene 1 reacted readily with [RhCl(PPh(3))(3)] and [RhCl(cod)(PPh(3))] (cod=1,5‐cyclooctadiene) to give, in both cases, the PGeP‐pincer chloridogermyl rhodium(I) derivative [Rh{κ(3) P,Ge,P‐GeCl(pyrmP( i )Pr(2))(2)CMe(2)}(PPh(3))] (2). Similarly, the reaction of 1 with [RhCl(cod)(MeCN)] afforded [Rh{κ(3) P,Ge,P‐GeCl(pyrmP( i )Pr(2))(2)CMe(2)}(MeCN)] (3). The methoxidogermyl and methylgermyl rhodium(I) complexes [Rh{κ(3) P,Ge,P‐GeR(pyrmP( i )Pr(2))(2)CMe(2)}(PPh(3))] (R=OMe, 4; Me, 5) were prepared by treating complex 2 with LiOMe and LiMe, respectively. Complex 5 readily reacted with CO to give the carbonyl rhodium(I) derivative [Rh{κ(3) P,Ge,P‐GeR(pyrmP( i )Pr(2))(2)CMe(2)}(CO)] (6), with HCl, HSnPh(3) and Ph(2)S(2) rendering the pentacoordinate methylgermyl rhodium(III) complexes [RhHX{κ(3) P,Ge,P‐GeMe(pyrmP( i )Pr(2))(2)CMe(2)}] (X=Cl, 7; SnPh(3), 8) and [Rh(SPh)(2){κ(3) P,Ge,P‐GeMe(pyrmP( i )Pr(2))(2)CMe(2)}] (9), respectively, and with H(2) to give the hexacoordinate derivative [RhH(2){κ(3) P,Ge,P‐GeMe(pyrmP( i )Pr(2))(2)CMe(2)}(PPh(3))] (10). Complexes 3 and 5 are catalyst precursors for the hydroboration of styrene, 4‐vinyltoluene and 4‐vinylfluorobenzene with catecholborane under mild conditions. John Wiley and Sons Inc. 2022-06-29 2022-08-10 /pmc/articles/PMC9545308/ /pubmed/35612568 http://dx.doi.org/10.1002/chem.202200847 Text en © 2022 The Authors. Chemistry - A European Journal published by Wiley-VCH GmbH https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Cabeza, Javier A.
Fernández‐Colinas, José M.
García‐Álvarez, Joaquín
García‐Álvarez, Pablo
Laglera‐Gándara, Carlos J.
Ramos‐Martín, Marina
Dipyrromethane‐Based PGeP Pincer Germyl Rhodium Complexes
title Dipyrromethane‐Based PGeP Pincer Germyl Rhodium Complexes
title_full Dipyrromethane‐Based PGeP Pincer Germyl Rhodium Complexes
title_fullStr Dipyrromethane‐Based PGeP Pincer Germyl Rhodium Complexes
title_full_unstemmed Dipyrromethane‐Based PGeP Pincer Germyl Rhodium Complexes
title_short Dipyrromethane‐Based PGeP Pincer Germyl Rhodium Complexes
title_sort dipyrromethane‐based pgep pincer germyl rhodium complexes
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9545308/
https://www.ncbi.nlm.nih.gov/pubmed/35612568
http://dx.doi.org/10.1002/chem.202200847
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