| Literature DB >> 23821579 |
Sylvain Achelle1, Jean-Pierre Malval, Stéphane Aloïse, Alberto Barsella, Arnaud Spangenberg, Loic Mager, Huriye Akdas-Kilig, Jean-Luc Fillaut, Bertrand Caro, Françoise Robin-le Guen.
Abstract
The nonlinear properties and the photophysical behavior of two π-conjugated chromophores that incorporate an electron-deficient pyrimidine core (A) and γ-methylenepyrans as terminal donor (D) groups have been thoroughly investigated. Both dipolar and quadrupolar branching strategies are explored and rationalized on the basis of the Frenkel exciton model. Even though a cooperative effect is clearly observed if the dimensionality is increased, the nonlinear optical (NLO) response of this series is moderate if one considers the nature of the D/A couple and the size of the chromophores (as measured by the number of π electrons). This effect was attributed to a disruption in the electronic conjugation within the dyes' scaffold for which the geometry deviates from planarity owing to a noticeable twisting of the pyranylidene end-groups. This latter structural parameter also has a strong influence on the excited-state dynamics, which leads to a very efficient fluorescence quenching.Entities:
Keywords: chromophores; conjugation; heterocycles; nonlinear optics; photophysics
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Year: 2013 PMID: 23821579 DOI: 10.1002/cphc.201300419
Source DB: PubMed Journal: Chemphyschem ISSN: 1439-4235 Impact factor: 3.102