Cargando…

Evaluation of the coordination preferences and catalytic pathways of heteroaxial cobalt oximes towards hydrogen generation

Three new heteroaxial cobalt oxime catalysts, namely [Co(III)(prdioxH)((4tBu)py)(Cl)]PF(6) (1), [Co(III)(prdioxH)((4Pyr)py)(Cl)]PF(6) (2), and [Co(III)(prdioxH)((4Bz)py)(Cl)]PF(6) (3) have been studied. These species contain chloro and substituted tert-butyl/pyrrolidine/benzoyl-pyridino ligands axia...

Descripción completa

Detalles Bibliográficos
Autores principales: Basu, Debashis, Mazumder, Shivnath, Niklas, Jens, Baydoun, Habib, Wanniarachchi, Dakshika, Shi, Xuetao, Staples, Richard J., Poluektov, Oleg, Schlegel, H. Bernhard, Verani, Cláudio N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6006490/
https://www.ncbi.nlm.nih.gov/pubmed/29997819
http://dx.doi.org/10.1039/c5sc04214c
_version_ 1783332847049768960
author Basu, Debashis
Mazumder, Shivnath
Niklas, Jens
Baydoun, Habib
Wanniarachchi, Dakshika
Shi, Xuetao
Staples, Richard J.
Poluektov, Oleg
Schlegel, H. Bernhard
Verani, Cláudio N.
author_facet Basu, Debashis
Mazumder, Shivnath
Niklas, Jens
Baydoun, Habib
Wanniarachchi, Dakshika
Shi, Xuetao
Staples, Richard J.
Poluektov, Oleg
Schlegel, H. Bernhard
Verani, Cláudio N.
author_sort Basu, Debashis
collection PubMed
description Three new heteroaxial cobalt oxime catalysts, namely [Co(III)(prdioxH)((4tBu)py)(Cl)]PF(6) (1), [Co(III)(prdioxH)((4Pyr)py)(Cl)]PF(6) (2), and [Co(III)(prdioxH)((4Bz)py)(Cl)]PF(6) (3) have been studied. These species contain chloro and substituted tert-butyl/pyrrolidine/benzoyl-pyridino ligands axially coordinated to a trivalent cobalt ion bound to the N(4)-oxime macrocycle (2E,2′E,3E,3′E)-3,3′-(propane-1,3-diylbis(azanylylidene))bis(butan-2-one)dioxime, abbreviated (prdioxH)(–) in its monoprotonated form. Emphasis was given to the spectroscopic investigation of the coordination preferences and spin configurations among the different 3d(6) Co(III), 3d(7) Co(II), and 3d(8) Co(I) oxidation states of the metal, and to the catalytic proton reduction with an evaluation of the pathways for the generation of H(2)via Co(III)–H(–) or Co(II)–H(–) intermediates by mono and bimetallic routes. The strong field imposed by the (prdioxH)(–) ligand precludes the existence of high-spin configurations, and 6-coordinate geometry is favored by the (LS)Co(III) species. Species 1 and 3 show a split Co(III)/Co(II) electrochemical wave associated with partial chemical conversion to a [Co(III)(prdioxH)Cl(2)] species, whereas 2 shows a single event. The reduction of these Co(III) complexes yields (LS)Co(II) and (LS)Co(I) species in which the pyridine acts as the dominant axial ligand. In the presence of protons, the catalytically active Co(I) species generates a Co(III)–H(–) hydride species that reacts heterolytically with another proton to generate dihydrogen. The intermediacy of a trifluoroacetate-bound Co(III)/Co(II) couple in the catalytic mechanism is proposed. These results allow for a generalization of the behavior of heteroaxial cobalt macrocycles and serve as guidelines for the development of new catalysts based on macrocyclic frameworks.
format Online
Article
Text
id pubmed-6006490
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-60064902018-07-11 Evaluation of the coordination preferences and catalytic pathways of heteroaxial cobalt oximes towards hydrogen generation Basu, Debashis Mazumder, Shivnath Niklas, Jens Baydoun, Habib Wanniarachchi, Dakshika Shi, Xuetao Staples, Richard J. Poluektov, Oleg Schlegel, H. Bernhard Verani, Cláudio N. Chem Sci Chemistry Three new heteroaxial cobalt oxime catalysts, namely [Co(III)(prdioxH)((4tBu)py)(Cl)]PF(6) (1), [Co(III)(prdioxH)((4Pyr)py)(Cl)]PF(6) (2), and [Co(III)(prdioxH)((4Bz)py)(Cl)]PF(6) (3) have been studied. These species contain chloro and substituted tert-butyl/pyrrolidine/benzoyl-pyridino ligands axially coordinated to a trivalent cobalt ion bound to the N(4)-oxime macrocycle (2E,2′E,3E,3′E)-3,3′-(propane-1,3-diylbis(azanylylidene))bis(butan-2-one)dioxime, abbreviated (prdioxH)(–) in its monoprotonated form. Emphasis was given to the spectroscopic investigation of the coordination preferences and spin configurations among the different 3d(6) Co(III), 3d(7) Co(II), and 3d(8) Co(I) oxidation states of the metal, and to the catalytic proton reduction with an evaluation of the pathways for the generation of H(2)via Co(III)–H(–) or Co(II)–H(–) intermediates by mono and bimetallic routes. The strong field imposed by the (prdioxH)(–) ligand precludes the existence of high-spin configurations, and 6-coordinate geometry is favored by the (LS)Co(III) species. Species 1 and 3 show a split Co(III)/Co(II) electrochemical wave associated with partial chemical conversion to a [Co(III)(prdioxH)Cl(2)] species, whereas 2 shows a single event. The reduction of these Co(III) complexes yields (LS)Co(II) and (LS)Co(I) species in which the pyridine acts as the dominant axial ligand. In the presence of protons, the catalytically active Co(I) species generates a Co(III)–H(–) hydride species that reacts heterolytically with another proton to generate dihydrogen. The intermediacy of a trifluoroacetate-bound Co(III)/Co(II) couple in the catalytic mechanism is proposed. These results allow for a generalization of the behavior of heteroaxial cobalt macrocycles and serve as guidelines for the development of new catalysts based on macrocyclic frameworks. Royal Society of Chemistry 2016-05-01 2016-02-02 /pmc/articles/PMC6006490/ /pubmed/29997819 http://dx.doi.org/10.1039/c5sc04214c Text en This journal is © The Royal Society of Chemistry 2016 https://creativecommons.org/licenses/by-nc/3.0/This article is freely available. This article is licensed under a Creative Commons Attribution Non Commercial 3.0 Unported Licence (CC BY-NC 3.0)
spellingShingle Chemistry
Basu, Debashis
Mazumder, Shivnath
Niklas, Jens
Baydoun, Habib
Wanniarachchi, Dakshika
Shi, Xuetao
Staples, Richard J.
Poluektov, Oleg
Schlegel, H. Bernhard
Verani, Cláudio N.
Evaluation of the coordination preferences and catalytic pathways of heteroaxial cobalt oximes towards hydrogen generation
title Evaluation of the coordination preferences and catalytic pathways of heteroaxial cobalt oximes towards hydrogen generation
title_full Evaluation of the coordination preferences and catalytic pathways of heteroaxial cobalt oximes towards hydrogen generation
title_fullStr Evaluation of the coordination preferences and catalytic pathways of heteroaxial cobalt oximes towards hydrogen generation
title_full_unstemmed Evaluation of the coordination preferences and catalytic pathways of heteroaxial cobalt oximes towards hydrogen generation
title_short Evaluation of the coordination preferences and catalytic pathways of heteroaxial cobalt oximes towards hydrogen generation
title_sort evaluation of the coordination preferences and catalytic pathways of heteroaxial cobalt oximes towards hydrogen generation
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6006490/
https://www.ncbi.nlm.nih.gov/pubmed/29997819
http://dx.doi.org/10.1039/c5sc04214c
work_keys_str_mv AT basudebashis evaluationofthecoordinationpreferencesandcatalyticpathwaysofheteroaxialcobaltoximestowardshydrogengeneration
AT mazumdershivnath evaluationofthecoordinationpreferencesandcatalyticpathwaysofheteroaxialcobaltoximestowardshydrogengeneration
AT niklasjens evaluationofthecoordinationpreferencesandcatalyticpathwaysofheteroaxialcobaltoximestowardshydrogengeneration
AT baydounhabib evaluationofthecoordinationpreferencesandcatalyticpathwaysofheteroaxialcobaltoximestowardshydrogengeneration
AT wanniarachchidakshika evaluationofthecoordinationpreferencesandcatalyticpathwaysofheteroaxialcobaltoximestowardshydrogengeneration
AT shixuetao evaluationofthecoordinationpreferencesandcatalyticpathwaysofheteroaxialcobaltoximestowardshydrogengeneration
AT staplesrichardj evaluationofthecoordinationpreferencesandcatalyticpathwaysofheteroaxialcobaltoximestowardshydrogengeneration
AT poluektovoleg evaluationofthecoordinationpreferencesandcatalyticpathwaysofheteroaxialcobaltoximestowardshydrogengeneration
AT schlegelhbernhard evaluationofthecoordinationpreferencesandcatalyticpathwaysofheteroaxialcobaltoximestowardshydrogengeneration
AT veraniclaudion evaluationofthecoordinationpreferencesandcatalyticpathwaysofheteroaxialcobaltoximestowardshydrogengeneration