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Electronic absorption and ground state structure of carotenoid molecules.

Authors :
Mendes-Pinto MM
Sansiaume E
Hashimoto H
Pascal AA
Gall A
Robert B
Source :
The journal of physical chemistry. B [J Phys Chem B] 2013 Sep 26; Vol. 117 (38), pp. 11015-21. Date of Electronic Publication: 2013 Jan 15.
Publication Year :
2013

Abstract

Predicting the complete electronic structure of carotenoid molecules remains an extremely complex problem, particularly in anisotropic media such as proteins. In this paper, we address the electronic properties of nine relatively simple carotenoids by the combined use of electronic absorption and resonance Raman spectroscopies. Linear carotenoids exhibit an excellent correlation between (i) the inverse of their conjugation chain length N, (ii) the energy of their S0 → S2 electronic transition, and (iii) the position of their ν1 Raman band (corresponding to the stretching mode of their conjugated C═C bonds). For cyclic carotenoids such as β-carotene, this correlation is also observed between the latter two parameters (S0 → S2 energy and ν1 frequency), whereas their "nominal" conjugation length N does not follow the same relationship. We conclude that β-carotene and cyclic carotenoids in general exhibit a shorter effective conjugation length than that expected from their chemical structure. In addition, the effect of solvent polarizability on these molecular parameters was investigated for four of the carotenoids used in this study. We demonstrate that resonance Raman spectroscopy can discriminate between the different effects underlying shifts in the S0 → S2 transition of carotenoid molecules.

Details

Language :
English
ISSN :
1520-5207
Volume :
117
Issue :
38
Database :
MEDLINE
Journal :
The journal of physical chemistry. B
Publication Type :
Academic Journal
Accession number :
23294447
Full Text :
https://doi.org/10.1021/jp309908r