The role of branching in the ultrafast dynamics and two-photon absorption of two pyrimidine push-pull molecules
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Royal Society of Chemistry
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The dynamics and two-photon absorption (2PA) properties of two pyrimidine chromophores are studied using femtosecond time-resolved fluorescence and two-photon excited fluorescence techniques. The pyrimidine is used as an electron withdrawing group and is substituted at the C2 position with a phenylacridan fragment, while diphenylaministyryl donor moieties are appended at positions C4/6 to afford the pseudo-dipolar and pseudo-quadrupolar molecules 1 and 2, respectively. Chromophore 2 shows more efficient fluorescence emission, while 1 exhibits larger Stokes shifts. Their decay pathways are discussed through an emission from a Franck-Condon charge transfer (FC-CT) and a relaxed charge transfer (R-CT) state. Ultrafast dynamics in tetrahydrofuran show population of the R-CT state for 1 that is faster than solvation, while for 2, due to its pseudo-quadrupolar nature, R-CT population is slower and occurs from the solvated FC-CT state. Finally, molecule 2 shows better 2PA properties with cross sections reaching 560 GM at 820 nm.
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p. 11649-11658
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1463-9076
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Physical Chemistry Chemical Physics, volume 27, issue: 22
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https://doi.org/10.1039/d5cp00589b
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two-photon absorption, pyrimidine, chromophores, fluorescence, charge transfer, dvoufotonová absorpce, pyrimidin, chromofor, fluorescence, přenos náboje