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Ligand Exchange and Redox Processes in Iridium Triazolylidene Complexes Relevant to Catalytic Water Oxidation
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ic-2014-01894u_ms_revsdR2.pdf | 1.22 MB |
Date Issued
21 November 2014
Date Available
21T04:00:09Z November 2015
Abstract
Iridium(III) complexes containing a bidentate spectator ligand have emerged as powerful catalyst precursors for water oxidation. Here we investigate the initial steps of the transformation at the iridium center when using complex [IrCp*(pyr-trz)Cl] 1 (Cp* = pentamethylcyclopentadienyl, pyr-trz = 4-(2-pyridyl)-1,2,3-triazol-5-ylidene), a potent water oxidation catalyst precursor. Ligand exchange with water is facile and is reversed in the presence of chloride ions, while MeCN substitution is effective only from the corresponding aqua complex. A pKa of 8.3 for the aqua complex was determined, which is in agreement with strong electron donation from the triazolylidene ligand that is comparable to aryl anions. Evaluation of the pH-dependent oxidation process in aqueous media reveals two regimes (pH 4–8.5 and above pH 10.5) where proton-coupled electron transfer processes occur. These investigations will help to further optimize water oxidation catalysts and indicate that MeCN as a cosolvent has adverse effects for initiating water coordination in the oxidation process.
Sponsorship
European Research Council
Science Foundation Ireland
Other Sponsorship
Spanish Ministry of Economy and Competitiveness
Type of Material
Journal Article
Publisher
American Chemical Society
Journal
Inorganic Chemistry
Volume
53
Issue
24
Start Page
12896
End Page
12901
Copyright (Published Version)
2014 American Chemical Society
Language
English
Status of Item
Peer reviewed
This item is made available under a Creative Commons License
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