Excited state dynamics of protonated dopamine: hydration and conformation effects

Electronic and vibrational spectroscopy in a cryogenic ion trap has been applied to protonated dopamine water clusters and assigned with the help of quantum chemistry calculations performed in the ground and electronic excited states. A dramatic hydration effect is observed when dopamine is solvated...

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Veröffentlicht in:Physical chemistry chemical physics : PCCP 2022-05, Vol.24 (18), p.1737-1744
Hauptverfasser: Hirata, Keisuke, Kasai, Ken-Ichi, Yoshizawa, Koki, Grégoire, Gilles, Ishiuchi, Shun-Ichi, Fujii, Masaaki
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Sprache:eng
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Zusammenfassung:Electronic and vibrational spectroscopy in a cryogenic ion trap has been applied to protonated dopamine water clusters and assigned with the help of quantum chemistry calculations performed in the ground and electronic excited states. A dramatic hydration effect is observed when dopamine is solvated by three water molecules. The broad electronic spectra recorded for the bare and small water clusters containing protonated dopamine turn to sharp, well-resolved vibronic transitions in the 1-3 complex. This reflects the change induced by hydration in the photodynamics of protonated dopamine which is initially controlled by an excited state proton transfer (ESPT) reaction from the ammonium group toward the catechol ring. Interestingly, conformer selectivity is revealed in the 1-3 complex which shows two low lying energy conformers for which the ESPT reaction is prevented or not depending on the H-bond network formed between the dopamine and water molecules. Dramatic hydration effect in the photodynamics of protonated dopamine revealed by cold ion spectroscopy.
ISSN:1463-9076
1463-9084
DOI:10.1039/d2cp00543c