Ultrafast valence to non-valence excited state dynamics in a common anionic chromophore

James N. Bull, Cate S. Anstöter, Jan R.R. Verlet*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

Non-valence states in neutral molecules (Rydberg states) have well-established roles and importance in photochemistry, however, considerably less is known about the role of non-valence states in photo-induced processes in anions. Here, femtosecond time-resolved photoelectron imaging is used to show that photoexcitation of the S1(ππ*) state of the methyl ester of deprotonated para-coumaric acid – a model chromophore for photoactive yellow protein (PYP) – leads to a bifurcation of the excited state wavepacket. One part remains on the S1(ππ*) state forming a twisted intermediate, whilst a second part leads to the formation of a non-valence (dipole-bound) state. Both populations eventually decay independently by vibrational autodetachment. Valence-to-non-valence internal conversion has hitherto not been observed in the intramolecular photophysics of an isolated anion, raising questions into how common such processes might be, given that many anionic chromophores have bright valence states near the detachment threshold.

Original languageEnglish
Article number5820
JournalNature Communications
Volume10
Issue number1
Early online date20 Dec 2019
DOIs
Publication statusE-pub ahead of print - 20 Dec 2019

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