Issue 4, 2007

Substitution and solvent effects in the chalcones isomerization barrier of flavylium photochromic systems

Abstract

Useful application of photochromic compounds as optical memories implies the existence of a large kinetic barrier between the forms interconverted by light. In the case of flavylium salts, the ground state isomerization barrier between the photoisomerizable chalcone isomers is shown to correlate with the electron donating ability of the substituents, measured by their effects in the 1H NMR chemical shifts of the aromatic protons. Substitution with electron donating groups in ring A lowers the barrier while substitution at ring B has the opposite effect. However, in water, the observed increase is higher than expected in the case of compound 4′,9-dihydroxychalcone when compared with the analogous 4′-dimethylamino-9-hydroxychalcone, containing a better electron donating group in the same position. Our interpretation is that the water network is providing an efficient pathway to form tautomers. In acetonitrile, unlike water, the expected order is indeed observed: Ea(4′,9-dihydroxychalcone) = 60 kJ mol−1 < Ea (4′-dimethylamino-9-hydroxychalcone) = 69 kJ mol−1.

Graphical abstract: Substitution and solvent effects in the chalcones isomerization barrier of flavylium photochromic systems

Article information

Article type
Paper
Submitted
01 Sep 2006
Accepted
14 Dec 2006
First published
25 Jan 2007

Photochem. Photobiol. Sci., 2007,6, 381-385

Substitution and solvent effects in the chalcones isomerization barrier of flavylium photochromic systems

A. Roque, J. C. Lima, A. J. Parola and F. Pina, Photochem. Photobiol. Sci., 2007, 6, 381 DOI: 10.1039/B612612J

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