Scientific article
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Electronic and solvent reorganization in proton-coupled electron transfer captured by ultrafast X-rays

Published inNature communications, vol. 17, no. 1, 9053
First online date2026-08-26
Abstract

Proton-coupled electron transfer (PCET) is foundational to catalysis, bioenergetics, and energy conversion, yet directly observing the interplay between electronic redistribution, protonation, and solvent reorganization remains challenging. We combine femtosecond optical spectroscopy, ultrafast N K-edge X-ray absorption spectroscopy, and time-resolved X-ray solution scattering to capture the steps of a sequential PCET reaction in water with atomic-site specificity. Using a ruthenium polypyridyl model complex, we resolve the electron redistribution upon photoinduced metal-to-ligand charge transfer and subsequent ( ~ 460 ps) protonation at a ligand nitrogen, as well as the concomitant rearrangement of the first-solvation-shell. Combined with advanced electronic structure and molecular dynamics simulations, our measurements reveal a marked localization of the excited-state electron density at the protonated N site, together with a switch from N···HO to NH···O hydrogen-bonds. These results establish a multimodal X-ray framework for mechanistic insight into PCET and its control in catalysis, artificial photosynthesis, and biological energy flow.

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Citation (ISO format)
KAHRAMAN, Abdullah et al. Electronic and solvent reorganization in proton-coupled electron transfer captured by ultrafast X-rays. In: Nature communications, 2026, vol. 17, n° 1, p. 9053. doi: 10.1038/s41467-026-75943-4
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Additional URL for this publicationhttps://www.nature.com/articles/s41467-026-75943-4
Journal ISSN2041-1723
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Creation27/08/2026 06:22:42
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