Intramolecular proton transfer boosts water oxidation catalyzed by a Ru complex

dc.contributor.author
Matheu, Roc
dc.contributor.author
Ertem, Mehmed .Z.
dc.contributor.author
Benet-Buchholz, Jordi
dc.contributor.author
Coronado, Eugenio
dc.contributor.author
Batista, Victor S.
dc.contributor.author
Sala, Xavier
dc.contributor.author
Llobet, Antoni
dc.date.accessioned
2018-01-15T16:03:35Z
dc.date.accessioned
2018-02-15T10:28:33Z
dc.date.accessioned
2024-04-23T10:32:19Z
dc.date.available
2018-01-15T16:03:35Z
dc.date.available
2018-02-15T10:28:33Z
dc.date.available
2024-04-23T10:32:19Z
dc.date.issued
2015
dc.identifier.uri
http://hdl.handle.net/2072/305863
dc.description.abstract
<p> We introduce a new family of complexes with the general formula [Ru<em><sup>n</sup></em>(tda)(py)<sub>2</sub>]<em><sup>m</sup></em><sup>+</sup> (<em>n</em> = 2, <em>m</em> = 0, <strong>1</strong>; <em>n</em> = 3, <em>m</em> = 1, <strong>2</strong><sup>+</sup>; <em>n</em> = 4, <em>m</em> = 2, <strong>3</strong><sup>2+</sup>), with tda<sup>2&ndash;</sup> being [2,2&prime;:6&prime;,2&Prime;-terpyridine]-6,6&Prime;-dicarboxylate, including complex [Ru<sup>IV</sup>(OH)(tda-&kappa;-N<sup>3</sup>O)(py)<sub>2</sub>]<sup>+</sup>, <strong>4H</strong><sup>+</sup>, which we find to be an impressive water oxidation catalyst, formed by hydroxo coordination to <strong>3</strong><sup>2+</sup> under basic conditions. The complexes are synthesized, isolated, and thoroughly characterized by analytical, spectroscopic (UV&ndash;vis, nuclear magnetic resonance, electron paramagnetic resonance), computational, and electrochemical techniques (cyclic voltammetry, differential pulse voltammetry, coulometry), including solid-state monocrystal X-ray diffraction analysis. In oxidation state IV, the Ru center is seven-coordinated and diamagnetic, whereas in oxidation state II, the complex has an unbonded dangling carboxylate and is six-coordinated while still diamagnetic. With oxidation state III, the coordination number is halfway between the coordination of oxidation states II and IV. Species generated in situ have also been characterized by spectroscopic, computational, and electrochemical techniques, together with the related species derived from a different degree of protonation and oxidation states. <strong>4H</strong><sup>+</sup> can be generated potentiometrically, or voltammetrically, from <strong>3</strong><sup>2+</sup>, and both coexist in solution. While complex <strong>3</strong><sup>2+</sup> is not catalytically active, the catalytic performance of complex <strong>4H</strong><sup>+</sup> is characterized by the foot of the wave analysis, giving an impressive turnover frequency record of 8000 s<sup>&ndash;1</sup> at pH 7.0 and 50 000 s<sup>&ndash;1</sup> at pH 10.0. Density functional theory calculations provide a complete description of the water oxidation catalytic cycle of <strong>4H</strong><sup>+</sup>, manifesting the key functional role of the dangling carboxylate in lowering the activation free energies that lead to O&ndash;O bond formation.</p> <p> &nbsp;</p> <p> &nbsp;</p>
dc.language.iso
eng
dc.publisher
American Chemical Society
dc.relation
MINECO with FEDER Funds
dc.relation
Proyectos I+D+I - Retos 2013
dc.relation
Severo Ochoa Excellence Accreditation 2014-2018
dc.relation
PRO-H
dc.relation.ispartof
Journal of The American Chemical Society
dc.rights
Copyright © 2015 American Chemical Society
dc.title
Intramolecular proton transfer boosts water oxidation catalyzed by a Ru complex
dc.type
info:eu-repo/semantics/article
dc.relation.projectID
CTQ2013-49075-R
dc.relation.projectID
SEV2013-0319
dc.relation.projectID
CTQ2014-52974-REDC
dc.identifier.doi
https://doi.org/10.1021/jacs.5b06541
dc.rights.accessLevel
info:eu-repo/semantics/openAccess


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