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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Self-Assembled Donor Acceptor Chromophores: Evident Layer Effect on the First Hyperpolarizability and Two-Dimensional Charge Transfer Character
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Self-Assembled Donor Acceptor Chromophores: Evident Layer Effect on the First Hyperpolarizability and Two-Dimensional Charge Transfer Character

机译:自组装供体受体发色团:关于第一个超极化性和二维电荷转移特征的明显层效应

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Self-assembled donor-acceptor chromophores have extensive applications in photofunctional devices owing to their unique charge transport properties. To explore the possibility of improving nonlinear optical (NLO) properties by self-assembly to multilayer complexes, we theoretically investigated the geometric and electronic structures, interlayer weak interactions, absorption spectra, charge transfer properties, polarizabilities (alpha), and first hyperpolarizabilities (beta) of naphthalimide,-phenyl, and-naphthyl monomers, dimers, and trimers by increasing the layer number n (n = 1, 2, 3). Different stacking patterns of their dimers were also taken into account. These show that parallel stacking patterns are conducive to maximizing overlap with respect to antiparallel ones due to the concept of optimal pi-orbital overlap is more vast than purely maximizing cofacial overlap to improve charge transport. The decreases in band gap for the di/trimeric versus monomeric naphthalimide,-phenyl, and-naphthyl monomers indicate the possibility of more favorable photoinduced electron transition in the aggregate when compared to the monomer. The linear and second-order NLO properties of these complexes are investigated in detail. The alpha values increase linearly as the increased number n of the layer (n = 1, 2, and 3), providing a new kind of tendency forecast method for the linear optical properties. Along with the increasing electron donating ability of the donor, the beta(tot), values of monomers increased, revealing the general rule of designing NLO molecular materials. The dependence of beta(tot) value on the layer number shows that the beta(tot) value increased with the increased number of layer, which can be rationalized by considering the enhancement of interlayer electronic transition and two-dimensional NLO character with the two charge transfer axes. We hope this work may evoke one's attention to design new, highly efficient second-order NLO materials with excellent building blocks: multilayer complexes.
机译:由于其独特的电荷运输性能,自组装的供体受体发色团具有在光功能互补装置中的广泛应用。为了探讨通过自组装改善非线性光学(NLO)性能的可能性,我们理论上研究了几何和电子结构,层间弱相互作用,吸收光谱,电荷转移性能,偏光性(α)和第一个超积分(Beta)通过增加层数n(n = 1,2,3),通过增加萘二烷基, - 苯基,萘基单体,二聚体和三聚体。还考虑了它们二聚体的不同堆叠模式。这些表明,由于最佳Pi-orbital重叠的概念,平行堆叠模式有利于相对于反平行的重叠,这是由于最佳PI-轨道重叠的概念比纯粹最大化的铸造型重叠,以改善电荷传输。与单体相比,DI /三聚体与单体萘二亚胺,-phenyl,萘基单体的带隙的降低表明与单体相比,聚集体中的更有利的光致电子转变的可能性。详细研究了这些配合物的线性和二阶NLO性质。 α值随着层(n = 1,2和3)的增加而线性增加,为线性光学性能提供了一种新的趋势预测方法。随着供体的增加的电子捐献能力,β(Tot),单体的值增加,揭示了设计NLO分子材料的一般规则。 Beta(Tot)值对层数的依赖性表明,通过增加的层数增加,可以通过考虑增强层间电子转换和二维NLO字符,通过两倍的电荷来合理化转移轴。我们希望这项工作可能会唤起一个人注意设计新的高效二阶NLO材料,具有优秀的积木:多层复合物。

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