Photo-CIDNP Reveals Different Protonation Sites Depending on the Primary Step of the Photoinduced Electron-/Proton-Transfer Process with Ru(II) Polyazaaromatic Complexes.

J Am Chem Soc

Laboratoire de Chimie Organique et Photochimie (CP 160/08), ‡Laboratoire de Résonance Magnétique Nucléaire Haute Résolution (CP 160/08), and §Service de Chimie Quantique et Photophysique (CP 160/09), Université libre de Bruxelles, 50 av. F. D. Roosevelt, B-1050 Brussels, Belgium.

Published: October 2017

The excited-state quenching of [Ru(TAP)(HAT)] (TAP = 1,4,5,8-tetraazaphenanthrene, HAT= 1,4,5,8,9,12-hexaazatriphenylene) by hydroquinone (HQ), N-acetyl-tyrosine (N-Ac-Tyr) or guanosine-5'-monophosphate (GMP) was investigated at various pH values. The quenching occurs via electron/proton transfer, as evidenced by transient absorption spectroscopy and confirmed by H photochemically induced dynamic nuclear polarization (photo-CIDNP). Reductive quenching also occurs in strongly acidic solution despite a much shorter lifetime of the protonated excited-state complex. Photo-CIDNP revealed a different mechanism at low pH, involving protonation before electron transfer and yielding a distinct protonated monoreduced complex. The experimental photo-CIDNP patterns are consistent with density functional theory calculations. This work highlights the power of H photo-CIDNP for characterizing, at the atomic level, transient species involved in electron-transfer processes.

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Source
http://dx.doi.org/10.1021/jacs.7b09513DOI Listing

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