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Substituted aromatic pentaphosphole ligands – a journey across the p-block

The functionalization of pentaphosphaferrocene [Cp*Fe(η(5)-P(5))] (1) with cationic group 13–17 electrophiles is shown to be a general synthetic strategy towards P–E bond formation of unprecedented diversity. The products of these reactions are dinuclear [{Cp*Fe}(2){μ,η(5:5)-(P(5))(2)EX(2)}][TEF] (E...

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Autores principales: Riesinger, Christoph, Balázs, Gábor, Seidl, Michael, Scheer, Manfred
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/PMC8513863/
https://www.ncbi.nlm.nih.gov/pubmed/34745534
http://dx.doi.org/10.1039/d1sc04296c
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author Riesinger, Christoph
Balázs, Gábor
Seidl, Michael
Scheer, Manfred
author_facet Riesinger, Christoph
Balázs, Gábor
Seidl, Michael
Scheer, Manfred
author_sort Riesinger, Christoph
collection PubMed
description The functionalization of pentaphosphaferrocene [Cp*Fe(η(5)-P(5))] (1) with cationic group 13–17 electrophiles is shown to be a general synthetic strategy towards P–E bond formation of unprecedented diversity. The products of these reactions are dinuclear [{Cp*Fe}(2){μ,η(5:5)-(P(5))(2)EX(2)}][TEF] (EX(2) = BBr(2) (2), GaI(2) (3), [TEF](−) = [Al{OC(CF(3))(3)}(4)](−)) or mononuclear [Cp*Fe(η(5)-P(5)E)][X] (E = CH(2)Ph (4), CHPh(2) (5), SiHPh(2) (6), AsCy(2) (7), SePh (9), TeMes (10), Cl (11), Br (12), I (13)) complexes of hetero-bis-pentaphosphole ((cyclo-P(5))(2)R) or hetero-pentaphosphole ligands (cyclo-P(5)R), the aromatic all-phosphorus analogs of prototypical cyclopentadienes. Further, modifying the steric and electronic properties of the electrophile has a drastic impact on its reactivity and leads to the formation of [Cp*Fe(μ,η(5:2)-P(5))SbICp′′′][TEF] (8) which possesses a triple-decker-like structure. X-ray crystallographic characterization reveals the slightly twisted conformation of the cyclo-P(5)R ligands in these compounds and multinuclear NMR spectroscopy confirms their integrity in solution. DFT calculations shed light on the bonding situation of these compounds and confirm the aromatic character of the pentaphosphole ligands on a journey across the p-block.
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spelling pubmed-85138632021-11-04 Substituted aromatic pentaphosphole ligands – a journey across the p-block Riesinger, Christoph Balázs, Gábor Seidl, Michael Scheer, Manfred Chem Sci Chemistry The functionalization of pentaphosphaferrocene [Cp*Fe(η(5)-P(5))] (1) with cationic group 13–17 electrophiles is shown to be a general synthetic strategy towards P–E bond formation of unprecedented diversity. The products of these reactions are dinuclear [{Cp*Fe}(2){μ,η(5:5)-(P(5))(2)EX(2)}][TEF] (EX(2) = BBr(2) (2), GaI(2) (3), [TEF](−) = [Al{OC(CF(3))(3)}(4)](−)) or mononuclear [Cp*Fe(η(5)-P(5)E)][X] (E = CH(2)Ph (4), CHPh(2) (5), SiHPh(2) (6), AsCy(2) (7), SePh (9), TeMes (10), Cl (11), Br (12), I (13)) complexes of hetero-bis-pentaphosphole ((cyclo-P(5))(2)R) or hetero-pentaphosphole ligands (cyclo-P(5)R), the aromatic all-phosphorus analogs of prototypical cyclopentadienes. Further, modifying the steric and electronic properties of the electrophile has a drastic impact on its reactivity and leads to the formation of [Cp*Fe(μ,η(5:2)-P(5))SbICp′′′][TEF] (8) which possesses a triple-decker-like structure. X-ray crystallographic characterization reveals the slightly twisted conformation of the cyclo-P(5)R ligands in these compounds and multinuclear NMR spectroscopy confirms their integrity in solution. DFT calculations shed light on the bonding situation of these compounds and confirm the aromatic character of the pentaphosphole ligands on a journey across the p-block. The Royal Society of Chemistry 2021-09-14 /pmc/articles/PMC8513863/ /pubmed/34745534 http://dx.doi.org/10.1039/d1sc04296c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Riesinger, Christoph
Balázs, Gábor
Seidl, Michael
Scheer, Manfred
Substituted aromatic pentaphosphole ligands – a journey across the p-block
title Substituted aromatic pentaphosphole ligands – a journey across the p-block
title_full Substituted aromatic pentaphosphole ligands – a journey across the p-block
title_fullStr Substituted aromatic pentaphosphole ligands – a journey across the p-block
title_full_unstemmed Substituted aromatic pentaphosphole ligands – a journey across the p-block
title_short Substituted aromatic pentaphosphole ligands – a journey across the p-block
title_sort substituted aromatic pentaphosphole ligands – a journey across the p-block
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8513863/
https://www.ncbi.nlm.nih.gov/pubmed/34745534
http://dx.doi.org/10.1039/d1sc04296c
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