Publication | Closed Access
Modulation of Third‐Order Nonlinear Optical Properties by Backbone Modification of Polymeric Pillared‐Layer Heterometallic Clusters
97
Citations
62
References
2008
Year
Optical MaterialsEngineeringSupramolecular AssemblyNonlinear OpticsMolecular Self-assemblyChemistryConjugated ChainOptical PropertiesOne-pot Self-assembly ReactionPillar-layer-alternating Honeycomblike FrameworksPolymer ChemistryMaterials SciencePhotonicsNon-linear OpticBackbone ModificationNonlinear CrystalsNatural SciencesSelf-assemblyPolymer ScienceApplied PhysicsOptical PhysicMolecule-based MaterialFunctional MaterialsOrganic-inorganic Hybrid Material
Three polymeric heterothiometallic clusters with 3D pillar-layer-alternating honeycomblike frameworks are synthesized by a one-pot self-assembly reaction. Z-scan experiments demonstrate that the nonlinear optical (NLO) behavior of these clusters can be modulated by modifying the conjugated chain of the connecting backbone ligands (see figure). Time-dependent density functional theory calculations support and rationalize the observed NLO modulation.
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