Publication | Closed Access
Synthesis and Second-Order Nonlinear Optical Properties of New Copper(II), Nickel(II), and Zinc(II) Schiff-Base Complexes. Toward a Role of Inorganic Chromophores for Second Harmonic Generation
166
Citations
49
References
1996
Year
Optical MaterialsEngineeringTheoretical Inorganic ChemistryComputational ChemistryChemistrySecond-order Nonlinear ResponseNew CopperInorganic CompoundOptical PropertiesNew Schiff-base LigandElectric FieldBiophysicsInorganic ChromophoresInorganic ChemistryPhotochemistryNon-linear OpticPhysical ChemistryInorganic SynthesisCoordination ComplexApplied PhysicsSecond Harmonic GenerationMolecular Complex
A new Schiff-base ligand based on the condensation of diaminomaleonitrile and 4-(diethylamino)salicylaldehyde is reported with its copper, nickel, and zinc complexes. Their second-order nonlinear optical properties are investigated by electric field induced second harmonic (EFISH) and ZINDO quantum-chemical calculations to probe the role of the metal center in the nonlinearity. All the complexes exhibit a second-order nonlinear response that is larger than that of the ligand with an hyperpolarizability (β) value of 400 (±100) 10-30 cm5 esu-1 for the zinc derivative at 1.34 μm. Theoretical calculations indicate that the two-level model is inadequate to describe the nonlinearity in such systems.
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