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Ultrafast dynamics of multi-exciton state coupled to coherent vibration in zinc chlorin aggregates for artificial photosynthesis.

Authors :
Shi T
Liu Z
Miyatake T
Tamiaki H
Kobayashi T
Zhang Z
Du J
Leng Y
Source :
Optics express [Opt Express] 2017 Nov 27; Vol. 25 (24), pp. 29667-29675.
Publication Year :
2017

Abstract

Ultrafast vibronic dynamics induced by the interaction of the Frenkel exciton with the coherent molecular vibrations in a layer-structured zinc chlorin aggregates prepared for artificial photosynthesis have been studied by 7.1 fs real-time vibrational spectroscopy with multi-spectrum detection. The fast decay of 100 ± 5fs is ascribed to the relaxation from the higher multi-exciton state (MES) to the one-exciton state, and the slow one of 863 ± 70fs is assigned to the relaxation from Q-exciton state to the dark nonfluorescent charge-transfer (CT) state, respectively. In addition, the wavelength dependences of the exciton-vibration coupling strength are found to follow the zeroth derivative of the transient absorption spectra of the exciton. It could be explained in term of the transition dipole moment modulated by dynamic intensity borrowing between the B transition and the Q transition through the vibronic interactions.

Details

Language :
English
ISSN :
1094-4087
Volume :
25
Issue :
24
Database :
MEDLINE
Journal :
Optics express
Publication Type :
Academic Journal
Accession number :
29221004
Full Text :
https://doi.org/10.1364/OE.25.029667