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Isolation of C1 through C4 derivatives from CO using heteroleptic uranium(iii) metallocene aryloxide complexes

The conversion of C1 feedstock molecules such as CO into commodity chemicals is a desirable, but challenging, endeavour. When the U(iii) complex, [(C(5)Me(5))(2)U(O-2,6-(t)Bu(2)-4-MeC(6)H(2))], is exposed to 1 atm of CO, only coordination is observed by IR spectroscopy as well as X-ray crystallograp...

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Autores principales: Ward, Robert J., del Rosal, Iker, Kelley, Steven P., Maron, Laurent, Walensky, Justin R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9945253/
https://www.ncbi.nlm.nih.gov/pubmed/36845919
http://dx.doi.org/10.1039/d2sc06375a
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author Ward, Robert J.
del Rosal, Iker
Kelley, Steven P.
Maron, Laurent
Walensky, Justin R.
author_facet Ward, Robert J.
del Rosal, Iker
Kelley, Steven P.
Maron, Laurent
Walensky, Justin R.
author_sort Ward, Robert J.
collection PubMed
description The conversion of C1 feedstock molecules such as CO into commodity chemicals is a desirable, but challenging, endeavour. When the U(iii) complex, [(C(5)Me(5))(2)U(O-2,6-(t)Bu(2)-4-MeC(6)H(2))], is exposed to 1 atm of CO, only coordination is observed by IR spectroscopy as well as X-ray crystallography, unveiling a rare structurally characterized f element carbonyl. However, using [(C(5)Me(5))(2)(MesO)U (THF)], Mes = 2,4,6-Me(3)C(6)H(2), reaction with CO forms the bridging ethynediolate species, [{(C(5)Me(5))(2)(MesO)U}(2)(μ(2)-OCCO)]. While ethynediolate complexes are known, their reactivity has not been reported in much detail to afford further functionalization. For example, addition of more CO to the ethynediolate complex with heating forms a ketene carboxylate, [{(C(5)Me(5))(2)(MesO)U}(2)(μ(2):κ(2):η(1)-C(3)O(3))], which can be further reacted with CO(2) to yield a ketene dicarboxylate complex, [{(C(5)Me(5))(2)(MesO)U}(2)(μ(2):κ(2):κ(2)-C(4)O(5))]. Since the ethynediolate showed reactivity with more CO, we explored its reactivity further. A [2 + 2] cycloaddition is observed with diphenylketene to yield [{(C(5)Me(5))(2)U}(2)(OC(CPh(2))C([double bond, length as m-dash]O)CO)] with concomitant formation of [(C(5)Me(5))(2)U(OMes)(2)]. Surprisingly, reaction with SO(2) shows rare S–O bond cleavage to yield the unusual [(O(2)CC(O)(SO)](2−) bridging ligand between two U(iv) centres. All complexes have been characterized using spectroscopic and structural methods, and the reaction of the ethynediolate with CO to form the ketene carboxylate has been investigated computationally as well as the reaction with SO(2).
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spelling pubmed-99452532023-02-23 Isolation of C1 through C4 derivatives from CO using heteroleptic uranium(iii) metallocene aryloxide complexes Ward, Robert J. del Rosal, Iker Kelley, Steven P. Maron, Laurent Walensky, Justin R. Chem Sci Chemistry The conversion of C1 feedstock molecules such as CO into commodity chemicals is a desirable, but challenging, endeavour. When the U(iii) complex, [(C(5)Me(5))(2)U(O-2,6-(t)Bu(2)-4-MeC(6)H(2))], is exposed to 1 atm of CO, only coordination is observed by IR spectroscopy as well as X-ray crystallography, unveiling a rare structurally characterized f element carbonyl. However, using [(C(5)Me(5))(2)(MesO)U (THF)], Mes = 2,4,6-Me(3)C(6)H(2), reaction with CO forms the bridging ethynediolate species, [{(C(5)Me(5))(2)(MesO)U}(2)(μ(2)-OCCO)]. While ethynediolate complexes are known, their reactivity has not been reported in much detail to afford further functionalization. For example, addition of more CO to the ethynediolate complex with heating forms a ketene carboxylate, [{(C(5)Me(5))(2)(MesO)U}(2)(μ(2):κ(2):η(1)-C(3)O(3))], which can be further reacted with CO(2) to yield a ketene dicarboxylate complex, [{(C(5)Me(5))(2)(MesO)U}(2)(μ(2):κ(2):κ(2)-C(4)O(5))]. Since the ethynediolate showed reactivity with more CO, we explored its reactivity further. A [2 + 2] cycloaddition is observed with diphenylketene to yield [{(C(5)Me(5))(2)U}(2)(OC(CPh(2))C([double bond, length as m-dash]O)CO)] with concomitant formation of [(C(5)Me(5))(2)U(OMes)(2)]. Surprisingly, reaction with SO(2) shows rare S–O bond cleavage to yield the unusual [(O(2)CC(O)(SO)](2−) bridging ligand between two U(iv) centres. All complexes have been characterized using spectroscopic and structural methods, and the reaction of the ethynediolate with CO to form the ketene carboxylate has been investigated computationally as well as the reaction with SO(2). The Royal Society of Chemistry 2023-02-06 /pmc/articles/PMC9945253/ /pubmed/36845919 http://dx.doi.org/10.1039/d2sc06375a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Ward, Robert J.
del Rosal, Iker
Kelley, Steven P.
Maron, Laurent
Walensky, Justin R.
Isolation of C1 through C4 derivatives from CO using heteroleptic uranium(iii) metallocene aryloxide complexes
title Isolation of C1 through C4 derivatives from CO using heteroleptic uranium(iii) metallocene aryloxide complexes
title_full Isolation of C1 through C4 derivatives from CO using heteroleptic uranium(iii) metallocene aryloxide complexes
title_fullStr Isolation of C1 through C4 derivatives from CO using heteroleptic uranium(iii) metallocene aryloxide complexes
title_full_unstemmed Isolation of C1 through C4 derivatives from CO using heteroleptic uranium(iii) metallocene aryloxide complexes
title_short Isolation of C1 through C4 derivatives from CO using heteroleptic uranium(iii) metallocene aryloxide complexes
title_sort isolation of c1 through c4 derivatives from co using heteroleptic uranium(iii) metallocene aryloxide complexes
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9945253/
https://www.ncbi.nlm.nih.gov/pubmed/36845919
http://dx.doi.org/10.1039/d2sc06375a
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