[Ru(Rtpy)(bpy)(HO)] (; bpy = 2,2'-bipyridine, and Rtpy = 2,2':6',2″-terpyridine derivatives) complexes with a variety of 4'-substituent groups on Rtpy were synthesized and characterized to reveal the effects of substituents on their structures, physicochemical properties, and catalytic activities for water oxidation. The geometric structures of are not considerably influenced by the electron-donating ability of the 4'-substituent groups on Rtpy. Similar multistep proton-coupled electron transfer reactions were observed for , and the redox potentials for each oxidation step tended to decrease with an increase in the electron-donating ability of the substituent, which is explained by the increased electron density on the Ru center by electron-donating groups, stabilizing the positive charge that builds up upon oxidation. This is consistent with the red-shift of the absorption bands around 480 nm assigned to the metal-to-ligand charge transfer transition for due to the increased d orbital energy level of the Ru center. The turnover frequency () of for water oxidation catalysis, however, depended greatly on the Rtpy ligands, varying from 0.05 × 10 to 44 × 10 s (as the highest was observed for R = ethoxy) by a factor of 880. A critical electron-donating ability of the 4'-substituent groups with a narrow range of Hammett constants (σ = -0.27 to -0.24) found for the highest values is valuable for understanding the great difficulty in the search for efficient water oxidation catalysts. On another front, the values increased with a decrease in the redox potentials of Ru═O/Ru═O for , indicating that the potential of formation of Ru═O species for is crucial for water oxidation catalysis under the employed conditions.

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http://dx.doi.org/10.1021/acs.inorgchem.9b01623DOI Listing

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