Literature DB >> 35609122

Understanding Carotenoid Dynamics via the Vibronic Energy Relaxation Approach.

Václav Šebelík1, Christopher D P Duffy2, Erika Keil1, Tomáš Polívka3,4, Jürgen Hauer1.   

Abstract

Carotenoids are an integral part of natural photosynthetic complexes, with tasks ranging from light harvesting to photoprotection. Their underlying energy deactivation network of optically dark and bright excited states is extremely efficient: after excitation of light with up to 2.5 eV of photon energy, the system relaxes back to ground state on a time scale of a few picoseconds. In this article, we summarize how a model based on the vibrational energy relaxation approach (VERA) explains the main characteristics of relaxation dynamics after one-photon excitation with special emphasis on the so-called S* state. Lineshapes after two-photon excitation are beyond the current model of VERA. We outline this future line of research in our article. In terms of experimental method development, we discuss which techniques are needed to better describe energy dissipation effects in carotenoids and within the first solvation shell.

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Year:  2022        PMID: 35609122      PMCID: PMC9190705          DOI: 10.1021/acs.jpcb.2c00996

Source DB:  PubMed          Journal:  J Phys Chem B        ISSN: 1520-5207            Impact factor:   3.466


  43 in total

1.  Ultrafast Dynamics of Long Homologues of Carotenoid Zeaxanthin.

Authors:  Hristina Staleva; Muhammad Zeeshan; Pavel Chábera; Vassilia Partali; Hans-Richard Sliwka; Tomáš Polívka
Journal:  J Phys Chem A       Date:  2015-11-05       Impact factor: 2.781

2.  Femtosecond time-resolved transient absorption spectroscopy of xanthophylls.

Authors:  Dariusz M Niedzwiedzki; James O Sullivan; Tomás Polívka; Robert R Birge; Harry A Frank
Journal:  J Phys Chem B       Date:  2006-11-16       Impact factor: 2.991

3.  Four-wave mixing signals from beta-carotene and its n = 15 homologue.

Authors:  Mitsuru Sugisaki; Masazumi Fujiwara; Kazuhiro Yanagi; Richard J Cogdell; Hideki Hashimoto
Journal:  Photosynth Res       Date:  2007-10-11       Impact factor: 3.573

4.  Ultrafast Time-resolved Absorption Spectroscopy of Geometric Isomers of Xanthophylls.

Authors:  Dariusz M Niedzwiedzki; Miriam M Enriquez; Amy M Lafountain; Harry A Frank
Journal:  Chem Phys       Date:  2010-07-19       Impact factor: 2.348

5.  Photophysics of the carotenoids associated with the xanthophyll cycle in photosynthesis.

Authors:  H A Frank; A Cua; V Chynwat; A Young; D Gosztola; M R Wasielewski
Journal:  Photosynth Res       Date:  1994-09       Impact factor: 3.573

6.  Collisional relaxation of apocarotenals: identifying the S* state with vibrationally excited molecules in the ground electronic state S(0)*.

Authors:  Florian Ehlers; Mirko Scholz; Jens Schimpfhauser; Jürgen Bienert; Kawon Oum; Thomas Lenzer
Journal:  Phys Chem Chem Phys       Date:  2015-04-28       Impact factor: 3.676

7.  An alternative carotenoid-to-bacteriochlorophyll energy transfer pathway in photosynthetic light harvesting.

Authors:  Emmanouil Papagiannakis; John T M Kennis; Ivo H M van Stokkum; Richard J Cogdell; Rienk van Grondelle
Journal:  Proc Natl Acad Sci U S A       Date:  2002-04-23       Impact factor: 11.205

8.  Pump-degenerate four wave mixing as a technique for analyzing structural and electronic evolution: multidimensional time-resolved dynamics near a conical intersection.

Authors:  Jürgen Hauer; Tiago Buckup; Marcus Motzkus
Journal:  J Phys Chem A       Date:  2007-10-03       Impact factor: 2.781

9.  Different carotenoid conformations have distinct functions in light-harvesting regulation in plants.

Authors:  Nicoletta Liguori; Pengqi Xu; Ivo H M van Stokkum; Bart van Oort; Yinghong Lu; Daniel Karcher; Ralph Bock; Roberta Croce
Journal:  Nat Commun       Date:  2017-12-08       Impact factor: 14.919

10.  Excited States of Xanthophylls Revisited: Toward the Simulation of Biologically Relevant Systems.

Authors:  Mattia Bondanza; Denis Jacquemin; Benedetta Mennucci
Journal:  J Phys Chem Lett       Date:  2021-07-12       Impact factor: 6.475

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