Molecular beam laser spectroscopic studies of the photoactive properties of resveratrol

Resonance Enhanced MultiPhoton Ionization spectroscopic techniques coupled with laser desorption and supersonic cooling have been employed to elucidate the photoactive properties of resveratrol. The observed excitation spectra give evidence for an internal-energy dependent trans–cis isomerisation pa...

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Veröffentlicht in:Photochemical & photobiological sciences 2023-12, Vol.22 (12), p.2715-2724
Hauptverfasser: Fan, Jiayun, Buma, Wybren Jan
Format: Artikel
Sprache:eng
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Zusammenfassung:Resonance Enhanced MultiPhoton Ionization spectroscopic techniques coupled with laser desorption and supersonic cooling have been employed to elucidate the photoactive properties of resveratrol. The observed excitation spectra give evidence for an internal-energy dependent trans–cis isomerisation pathway in the electronically excited state, while pump-probe studies show dynamics that are in line with what is known for the parent compound, trans -stilbene. Similar studies have been performed on a derivative of resveratrol with methoxy instead of hydroxy groups, a compound aimed to reduce previously observed photodegradation pathways of resveratrol. Time-resolved studies of the latter compound under solution conditions have given further insight into its excited-state dynamics and support the isolated-molecule conclusions on the topology of the potential energy surface of the electronically excited state. Spectroscopic studies under prolonged irradiation conditions show that both compounds suffer from photodegradation, although in the alkylated compound other pathways appear to be involved than in resveratrol. Graphical abstract
ISSN:1474-905X
1474-9092
DOI:10.1007/s43630-023-00481-7