首页> 外文期刊>Journal of Organometallic Chemistry >Theoretical exploration of second-order nonlinear optical properties of mono- and bimetallic Pt(II) dithienylcyclopentene complexes: Ligands and photoisomerization effect
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Theoretical exploration of second-order nonlinear optical properties of mono- and bimetallic Pt(II) dithienylcyclopentene complexes: Ligands and photoisomerization effect

机译:二阶非线性光学性质的理论探测单态和双金属PT(II)二噻吩基环戊烯配合物:配体和光学化作用

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摘要

On the basis of great diverse applications of nonlinear optical (NLO) materials, organometallic complexes have attracted considerable attention. In this paper, we present a detailed investigation on a series of Pt(II) dithienylcyclopentene(DTE)-based complexes via density functional theory method with the aim of evaluating their structures, electronic absorption spectra and first hyperpolarizabilities. The calculations demonstrate that the first hyperpolarizabilities can be enhanced by the introduction of quinolone into the complexes because of the enlarged spatial separation of electron density. However, Pt(II) complexes containing perfluorocyclopentene ring exhibit decreasing NLO response attributed to lower amount of charge transferred and short effective CT distance. The static first hyperpolarizabilities (btot) of monometallic Pt(II) complexes are larger than those of bimetallic Pt(II) complexes due to correlative mixed charge-transfer patterns. More importantly, the closed-ring (1c) complex comprising DTE unit exhibits the largest btot value approaching 144 x 10(-30) esu, with the contrast over five times compared to corresponding open-ring due to the better pi-conjugated delocalization and smaller HOMO and LUMO energy gap. In general, we envision our work will be beneficial for further rational design of DTEcontaining Pt(II) complexes as high performance NLO materials. (c) 2019 Elsevier B.V. All rights reserved.
机译:在非线性光学(NLO)材料的大多数应用的基础上,有机金属配合物引起了相当大的关注。在本文中,我们对一系列Pt(ii)二苯基环戊烯(DTE)的复合物通过密度泛函理论方法进行了详细研究,目的是评估其结构,电子吸收光谱和第一个超积分。计算表明,由于电子密度的空间分离扩大,通过将喹啉引入复合物中,可以通过引入喹啉来增强第一种超积极性。然而,含有全氟环戊烯环的Pt(II)配合物表现出归因于较低的电荷量和短的有效CT距离的NLO响应。单金属Pt(II)配合物的静态第一超极化(BTOT)大于相关的混合电荷转移图案引起的二微金属Pt(II)复合物。更重要的是,包括DTE单元的闭环(1C)复合物具有接近144×10(-30)ESU的最大BTOT值,其与由于PI缀合的临床化而相应的开口环比相比有五次的对比度。较小的同性恋和卢米能量隙。一般来说,我们设想我们的工作将有利于进一步合理设计Dtecontaining Pt(II)复合物作为高性能NLO材料。 (c)2019 Elsevier B.v.保留所有权利。

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