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Structure-Property Relationship and Systematic Study of a Series of Terpyridine Based Nonlinear Optical Compounds: DFT Computation of Interactive Design

机译:三吡啶基非线性光学化合物系列的结构 - 性质关系与系统研究:交互式设计的DFT计算

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The objective of this research work is to study the nonlinear optical (NLO) response of terpyridine ligand complexes. Terpyridine ligand based compounds were studied through quantum chemical calculations by using B3LYP/6-31g (d,p) basis sets. Density functional theory (DFT) calculations were performed to examine nonlinear optical properties of these newly designed compounds. Triphenylamine as electron donor and terpyridine ligand as an electron acceptor were connected directly. The -spacers were also used to connect the donor and acceptor to increase conjugation. Preparation and characterization of novel compounds or materials for NLO, especially for second harmonic generation (SHG), based on hydrogen-bonded compounds of organic nitrogen containing bases such as terpyridine is used in this research work. Terpyridine ligand has ability to stabilize the complexes. Chelation and supramolecular organization play key role in designing new second-order NLO materials/compounds. NLO compounds have emerged as one of the most attractive fields of current research in view of their vital applications in areas like optical modulation, optical switching, optical logic, frequency shifting and optical data storage for the developing technologies in telecommunications and in efficient signal processing. These newly designed chromophore/compounds show high thermal stability and large optical nonlinearity. In studied compounds dye-5 has its maximum NLO response calculated to be 1967.23 a.u.
机译:本研究工作的目的是研究噻吩配体配合物的非线性光学(NLO)响应。通过使用B3LYP / 6-31G(D,P)的基础套来研究通过量子化学计算的Terpyridine Ligand基化合物。进行密度函数理论(DFT)计算以检查这些新设计的化合物的非线性光学性质。作为电子受体作为电子受体和Terpyridine配体的三苯胺直接连接。 --Spacers也用于连接供体和受体以增加缀合。在本研究工作中使用基于氢键合碱的氢键合的碱基的二氢键(SHG)制备和表征NLO,特别是对于二次谐波产生(SHG)。 Terpyridine配体具有稳定络合物的能力。螯合和超分子组织在设计新的二阶NLO材料/化合物时起着关键作用。鉴于其在光学调制,光学切换,光学逻辑,频率转换和光学数据存储等领域的重要应用以及用于电信中的发展技术,以及高效的信号处理,可以成为目前研究的最具吸引力的研究领域之一。这些新设计的发色团/化合物显示出高热稳定性和大型光学非线性。在研究中,化合物染料-5的最大NLO响应计算为1967.23 A.u。

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