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Photo-redox reactivity of titanium-oxo clusters: mechanistic insight into a two-electron intramolecular process, and structural characterisation of mixed-valent Ti(iii)/Ti(iv) products

Small titanium-oxo-alkoxide clusters, [TiO(OR)(O(2)PR′(2))](4), synthesised by the stoichiometric reaction of Ti(O(i)Pr)(4), phosphinic acid and water, undergo a photo-redox transformation under long-wave UV light. The photo-reaction generates blue coloured, mixed-valence Ti(iii)/Ti(iv)-oxo clusters...

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Autores principales: Krämer, Tobias, Tuna, Floriana, Pike, Sebastian. D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6640198/
https://www.ncbi.nlm.nih.gov/pubmed/31391912
http://dx.doi.org/10.1039/c9sc01241a
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author Krämer, Tobias
Tuna, Floriana
Pike, Sebastian. D.
author_facet Krämer, Tobias
Tuna, Floriana
Pike, Sebastian. D.
author_sort Krämer, Tobias
collection PubMed
description Small titanium-oxo-alkoxide clusters, [TiO(OR)(O(2)PR′(2))](4), synthesised by the stoichiometric reaction of Ti(O(i)Pr)(4), phosphinic acid and water, undergo a photo-redox transformation under long-wave UV light. The photo-reaction generates blue coloured, mixed-valence Ti(iii)/Ti(iv)-oxo clusters alongside acetone and isopropanol by-products. This reactivity indicates the ability for photoactivated charge separation to occur in even the smallest of Ti-oxo clusters. EPR and NMR spectroscopic studies support a photo-redox mechanism that occurs via an intramolecular, two-electron pathway, directly relating to current doubling effects observed at TiO(2) photoanodes in the presence of alcohols. The rate of photo-reaction is solvent dependent, with donor solvents supporting the formation of low coordinate Ti(iii) sites. The nature of the electronic transition is identified by DFT and TDDFT calculations as an oxygen to titanium charge transfer and it is possible to finetune the UV absorption onset observed by changing the phosphinate ligand. A two-electron photo-reduced cluster, [Ti(4)O(4)(O(2)PPh(2))(6)], forms spontaneously from the photo-reaction and its structure is identified by X-ray crystallography with supporting DFT calculations. These indicate that [Ti(4)O(4)(O(2)PPh(2))(6)] is high-spin and contains two ferromagnetically coupled electrons delocalised over the Ti(4) core. [Ti(4)O(4)(O(2)PPh(2))(6)] undergoes rapid oxidation in air in the solid-state and performs a remarkable single-crystal to single-crystal transformation, to form a stable cluster-superoxide salt.
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spelling pubmed-66401982019-08-07 Photo-redox reactivity of titanium-oxo clusters: mechanistic insight into a two-electron intramolecular process, and structural characterisation of mixed-valent Ti(iii)/Ti(iv) products Krämer, Tobias Tuna, Floriana Pike, Sebastian. D. Chem Sci Chemistry Small titanium-oxo-alkoxide clusters, [TiO(OR)(O(2)PR′(2))](4), synthesised by the stoichiometric reaction of Ti(O(i)Pr)(4), phosphinic acid and water, undergo a photo-redox transformation under long-wave UV light. The photo-reaction generates blue coloured, mixed-valence Ti(iii)/Ti(iv)-oxo clusters alongside acetone and isopropanol by-products. This reactivity indicates the ability for photoactivated charge separation to occur in even the smallest of Ti-oxo clusters. EPR and NMR spectroscopic studies support a photo-redox mechanism that occurs via an intramolecular, two-electron pathway, directly relating to current doubling effects observed at TiO(2) photoanodes in the presence of alcohols. The rate of photo-reaction is solvent dependent, with donor solvents supporting the formation of low coordinate Ti(iii) sites. The nature of the electronic transition is identified by DFT and TDDFT calculations as an oxygen to titanium charge transfer and it is possible to finetune the UV absorption onset observed by changing the phosphinate ligand. A two-electron photo-reduced cluster, [Ti(4)O(4)(O(2)PPh(2))(6)], forms spontaneously from the photo-reaction and its structure is identified by X-ray crystallography with supporting DFT calculations. These indicate that [Ti(4)O(4)(O(2)PPh(2))(6)] is high-spin and contains two ferromagnetically coupled electrons delocalised over the Ti(4) core. [Ti(4)O(4)(O(2)PPh(2))(6)] undergoes rapid oxidation in air in the solid-state and performs a remarkable single-crystal to single-crystal transformation, to form a stable cluster-superoxide salt. Royal Society of Chemistry 2019-06-07 /pmc/articles/PMC6640198/ /pubmed/31391912 http://dx.doi.org/10.1039/c9sc01241a Text en This journal is © The Royal Society of Chemistry 2019 http://creativecommons.org/licenses/by/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (CC BY 3.0)
spellingShingle Chemistry
Krämer, Tobias
Tuna, Floriana
Pike, Sebastian. D.
Photo-redox reactivity of titanium-oxo clusters: mechanistic insight into a two-electron intramolecular process, and structural characterisation of mixed-valent Ti(iii)/Ti(iv) products
title Photo-redox reactivity of titanium-oxo clusters: mechanistic insight into a two-electron intramolecular process, and structural characterisation of mixed-valent Ti(iii)/Ti(iv) products
title_full Photo-redox reactivity of titanium-oxo clusters: mechanistic insight into a two-electron intramolecular process, and structural characterisation of mixed-valent Ti(iii)/Ti(iv) products
title_fullStr Photo-redox reactivity of titanium-oxo clusters: mechanistic insight into a two-electron intramolecular process, and structural characterisation of mixed-valent Ti(iii)/Ti(iv) products
title_full_unstemmed Photo-redox reactivity of titanium-oxo clusters: mechanistic insight into a two-electron intramolecular process, and structural characterisation of mixed-valent Ti(iii)/Ti(iv) products
title_short Photo-redox reactivity of titanium-oxo clusters: mechanistic insight into a two-electron intramolecular process, and structural characterisation of mixed-valent Ti(iii)/Ti(iv) products
title_sort photo-redox reactivity of titanium-oxo clusters: mechanistic insight into a two-electron intramolecular process, and structural characterisation of mixed-valent ti(iii)/ti(iv) products
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6640198/
https://www.ncbi.nlm.nih.gov/pubmed/31391912
http://dx.doi.org/10.1039/c9sc01241a
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