Issue 12, 2003

Spectral and photophysical characteristics of unsymmetric polymethine dyes as model compounds for the colour shift of visual pigments

Abstract

Selectively bridged unsymmetric cyanines (dimethylamino-vinyl-benzothiazolium dyes) have been studied with respect to their photophysical properties using steady-state and time-resolved fluorescence. The nonradiative deactivation channels strongly depend on the bridging pattern and can be enhanced or slowed down, with the changes mainly connected to the Arrhenius pre-exponential factor, reflecting the photochemical pathways. The spectral shifts, on the other hand, are independent of the bridging pattern and are correlated with the compound's position on a donor–acceptor axis including ideal polymethines. Using this model, the colour shift of visual pigments can be explained as an effect of the internal (protein-induced) electric field on the retinal Schiff base, likewise an unsymmetric polymethine dye system.

Graphical abstract: Spectral and photophysical characteristics of unsymmetric polymethine dyes as model compounds for the colour shift of visual pigments

  • This article is part of the themed collection: Vision

Article information

Article type
Paper
Submitted
06 Dec 2002
Accepted
13 May 2003
First published
13 Jun 2003

Photochem. Photobiol. Sci., 2003,2, 1264-1271

Spectral and photophysical characteristics of unsymmetric polymethine dyes as model compounds for the colour shift of visual pigments

M. Sczepan, W. Rettig and A. I. Tolmachev, Photochem. Photobiol. Sci., 2003, 2, 1264 DOI: 10.1039/B305380F

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