Publication | Open Access
Effect of Branching on Two‐Photon Absorption in Triphenylbenzene Derivatives
115
Citations
54
References
2007
Year
Organic Charge-transfer CompoundPhotonicsTriphenylbenzene DerivativesEngineeringPhotochromismPhysicsPhotochemistryOptical PropertiesOctupolar CompoundsNatural SciencesMechanistic PhotochemistryPhysical ChemistryPhotophysical PropertyLight AbsorptionQuantum ChemistryChemistryTriphenylbenzene CoreDipolar Branches
The photophysical and linear and nonlinear spectral properties of octupolar compounds with a triphenylbenzene core are investigated and compared with properties of corresponding dipolar branches. A correlation is found between the solvatochromic behavior and the two-photon absorption cross section. Moreover, the nature of the core is found to be responsible for the nature of the coupling between branches; in the studied case only (weak) electrostatic interactions are effective, while other cores, like the triphenylamine moiety, are able to promote coherent coupling between the branches, leading to strongly nonadditive properties.
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