Molecular Crystals and Liquid Crystals Incorporating Nonlinear Optics · 1990 · 40 citations · 7 references
Optical MaterialsEngineeringSupramolecular AssemblyNonlinear OpticsOrganic ElectronicsNonlinear Optical UsersMolecular Self-assemblyOrganic ChemistryChemistryAsymmetric Self-assembly QuestionOptical PropertiesMaterials ScienceNon-linear OpticPhotonic MaterialsOrganic SemiconductorMolecular MaterialNonlinear CrystalsAbstract Second OrderOrganic Material ChemistryNatural SciencesSelf-assemblyHydrogen BondsApplied PhysicsSecond Harmonic GenerationMolecule-based MaterialOptoelectronics
Abstract Second order non-linear optical (NLO) effects, such as second harmonic generation, occur only in materials that are acentric. Finding ways to assure that a bulk material is acentric has been a serious hurdle in the design of new organic materials for non-linear optical uses.1 A trivial, albeit useful, solution to the symmetry problem is to use chiral molecules which necessarily crystallize in acentric structures.2 The general solution to the problem involves understanding how to promote self-assembly of molecules, regardless of their molecular symmetry, into acentric arrays. We have found a partial answer to the asymmetric self-assembly question using intermolecular hydrogen bonds.
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Joseph Zyss, Jean‐François Nicoud, M. Coquillay · The Journal of Chemical Physics · 1984 · 480 citations
Engineering, Phase-matched Second-harmonic Generation, Natural Sciences +15