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Synthesis of asymmetric dendrimers with controllable chromophore concentration and improved electro-optical performance

机译:具有可控发色团浓度的不对称树枝状大分子的合成及改进的电光性能

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In this work, we firstly provided a simple work-up procedure to prepare a new kind of electro-optical dendrimer with an asymmetric configuration via a Cu-( I ) catalyzed Huisgen-reaction. The resulting NLO dendrimers exhibited both good thermal stability and good film-forming ability. In order to investigate the influence of the asymmetric configuration on the electro-optic (EO) activities, UV-vis spectra, density functional theory (DFT) calculations and EO performance were studied. Due to their asymmetric spherical structure, two dendrimers showed weak dipole–dipole aggregation compared with traditional dendritic electro-optical materials ( DESD ), but they achieved better alignment after each poling process was carried out. As expected, HJ-2 exhibited 41 pm V ~(?1) in an EO coefficient test, which was higher than DESD and the guest–host polymeric system ( C2 + PMMA) using the same chromophores.
机译:在这项工作中,我们首先提供了一种简单的处理程序,以通过Cu-(I)催化的Huisgen-反应制备具有不对称构型的新型电光树枝状聚合物。所得到的NLO树枝状聚合物具有良好的热稳定性和良好的成膜能力。为了研究对电光(EO)活性的不对称配置的影响,研究了UV-Vis光谱,密度泛函理论(DFT)计算和EO性能。由于其不对称的球形结构,与传统的树突电光材料(DESD)相比,两个树枝状大分子显示出较弱的偶极子 - 偶极聚集体,但在进行每个抛光过程之后,它们实现了更好的对准。正如预期的那样,HJ-2在EO系数试验中展示了41 pM V〜(?1),其使用相同的发色团高于DESD和客体 - 宿主聚合物系统(C2 + PMMA)。

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