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◆ Nature Communications2026-05-09· Ultrashort pulse

Tracking coherent vibronic and vibrational motions in ultrafast proton transfer

Somnath Biswas, Jason W. Sandwisch, Robert B. Weakly, Munira Khalil

原始摘要(英文原文)· Original abstract
Decades of theoretical and experimental work on excited-state intramolecular proton transfer systems indicate that electronic-vibrational (vibronic) coupling plays a significant role in ultrafast proton transfer reactions. However, the participating atomic motions of this chemical reaction have yet to be directly observed. The challenge in observing these rapid proton transfer processes lies in simultaneously probing both the electronic and vibrational degrees of freedom. Addressing these challenges requires advanced spectroscopic techniques that provide multidimensional (electronic and vibrational) structural information with femtosecond time resolution. Here, we use multidimensional electronic-vibrational spectroscopy to directly observe the vibronic motions driving the non-adiabatic excited-state proton transfer process in 10-hydroxybenzo[h]quinoline. We measure the interplay between high and low-frequency vibrations, mapping the proton transfer trajectory on two vibronically coupled electronic states. Our study enables the observation of vibronic coherence transfer, structural rearrangements, and intramolecular vibrational redistribution during and following proton transfer. Multidimensional spectroscopy probes both the electronic and nuclear degrees of freedom during and following ultrafast proton transfer, revealing vibronic dynamics that govern reaction coordinates and intramolecular vibrational redistribution.
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Tracking coherent vibronic and vibrational motions in ultrafast proton transfer — 科研速览 Science Skim