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首页> 外文期刊>Journal of Organometallic Chemistry >Redox-switchable second-order nonlinear optical responses of TEMPO-dithiolate ligand and (tempodt)M complexes (M = Pt, Pd)
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Redox-switchable second-order nonlinear optical responses of TEMPO-dithiolate ligand and (tempodt)M complexes (M = Pt, Pd)

机译:TEMPO-二硫代配体和(tempodt)M配合物(M = Pt,Pd)的氧化还原可切换二阶非线性光学响应

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摘要

Density functional theory (DFT) combined with the finite field (FF) method has been carried out to investigate the switching nonlinear optical (NLO) action of the TEMPO-bound dithiolate ligands and metal (Pt, Pd) complexes. The TEMPO unit is a redox-active radical and can stably exist in different redox states (TEMPOH, TEMPO~+, TEMPO, TEMPO~-). The DFT-FF calculations show that a substantial enhancement in second-order polarizability has been obtained in TEMPO~+-bound dithiolate ligand, with a value of 461 × 10~(-30) esu. It is because that the TEMPO moiety as donor strength has been lowered by one-electron-reduced, and then the TEMPO moiety becomes the acceptor character in one-electron-oxidized species ~1L~+. On the whole, the β_(tot) values of metal complexes within their four different states exhibit excellent NLO switching characters. Thus, this kind of metal complexes has a possibility to be excellent switching second-order NLO materials. Among four states of the metal complexes, the radical PtL and hydroxylamine PtLH species are nonlinearity "on", while the one-electron-oxidized ~3PtL~+ and one-electron-reduced ~3PtL~- species are nonlinearity "off". It can be seen from the following the real process. Specifically, the electron-acceptor ability of the diimine ligand decreases within its reduction process. However, the electronic character of dithiolate ligand will be changed from electron-donor to electron-acceptor when it is oxidated.
机译:进行了密度泛函理论(DFT)与有限域(FF)方法相结合的研究,以研究TEMPO结合的二硫醇盐配体和金属(Pt,Pd)配合物的转换非线性光学(NLO)作用。 TEMPO单元是具有氧化还原活性的基团,可以稳定地存在于不同的氧化还原状态(TEMPOH,TEMPO〜+,TEMPO,TEMPO〜-)中。 DFT-FF计算结果表明,在TEMPO〜+结合的二硫醇盐配体中,二阶极化率得到了显着提高,值为461×10〜(-30)esu。这是因为TEMPO部分作为供体强度已被一电子还原而降低,然后TEMPO部分成为一电子氧化物种〜1L〜+中的受体特征。总体而言,金属配合物在四种不同状态下的β_(tot)值表现出出色的NLO转换特性。因此,这种金属络合物有可能成为优良的转换二阶NLO材料。在金属配合物的四个状态中,自由基PtL和羟胺PtLH种类为非线性“开”,而一电子氧化的〜3PtL〜+和一电子还原的〜3PtL〜-种类为“关”。从下面的真实过程中可以看出。具体地,二亚胺配体的电子受体能力在其还原过程中降低。但是,二硫醇盐配体被氧化时,其电子特性将从电子供体变为电子受体。

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