Issue 11, 2010

Fast photo-processes in triazole-based push–pull systems

Abstract

Electron donor–acceptor compounds 1 (asymmetrical push–pull derivative) and 2 (symmetrical push–pull–push derivative) were studied in which one (push–pull) or two aniline units (push–pull–push) are connected to a biphenyl group via triazole linkers, made by “click” chemistry. Steady-state and time-resolved spectroscopies indicate that highly dipolar charge separated excited states are populated in moderately polar solvents. The very similar photophysical behavior of both compounds implies symmetry breaking in the excited state of 2. The polarity of the solvent determines the efficiency of formation of the charge separated state. While in toluene it is very low, it becomes very high in acetonitrile. The bis-triazole substituted biphenyl unit in 2 behaves as a better electron acceptor than the mono-triazole substituted biphenyl in 1, which leads to a more facile charge separation in 2. Rates of charge separation are of the order of 1011–1012 s−1, and increase with solvent polarity.

Graphical abstract: Fast photo-processes in triazole-based push–pull systems

Article information

Article type
Paper
Submitted
13 Oct 2009
Accepted
07 Jan 2010
First published
27 Jan 2010

Phys. Chem. Chem. Phys., 2010,12, 2706-2715

Fast photo-processes in triazole-based push–pull systems

P. D. Zoon, I. H. M. van Stokkum, M. Parent, O. Mongin, M. Blanchard-Desce and A. M. Brouwer, Phys. Chem. Chem. Phys., 2010, 12, 2706 DOI: 10.1039/B921322H

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