Publication | Closed Access
Bent-core liquid crystals in a route to efficient organic nonlinear optical materials
71
Citations
47
References
2010
Year
Optical MaterialsEngineeringNonlinear OpticsOrganic ElectronicsBent-core Liquid CrystalsLiquid Crystalline ElastomerChemistrySoft MatterNlo CoefficientsOptical PropertiesMaterials SciencePhotonicsCrystal MaterialNon-linear OpticPhotonic MaterialsMolecular MaterialNonlinear CrystalsCrystallographyCrystal Structure DesignOrganic Material ChemistryApplied PhysicsSecond Harmonic GenerationCrystalsFunctional Materials
The design, synthesis and nonlinear optical (NLO) response of some bent compounds, at both the molecular and macroscopic level, are reported. Based on a bent-core NLO-phore with a μβ0 in the range of 390 × 10−48 esu (1907 nm), the second order susceptibility tensor for second harmonic generation is evaluated at excitation wavelengths of 1064 and 1600 nm in a mesogenic material with a SmCP mesophase. The NLO coefficients are in the range 10–100 pm V−1. Thus it is deduced that a molecular design leading to bent-core liquid crystals with large β values is a correct strategy to achieve NLO-materials for bulk second order effects.
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