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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Dimerization and Isomerism Effects on Two-Photon Absorption of Tetraphenylethene Derivatives and Molecular Design for Two-Photon Absorption Materials
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Dimerization and Isomerism Effects on Two-Photon Absorption of Tetraphenylethene Derivatives and Molecular Design for Two-Photon Absorption Materials

机译:四苯乙烯衍生物的二光子吸收的二聚和异构效应及两光子吸收材料的分子设计

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摘要

The two-photon absorption (TPA) properties of a new tetraphenylethene derivative and its covalent dimers have been calculated employing the density functional response theory. It is found that linear arrangement of branches can give rise to a cooperative TPA behavior. Partial planarity and linear arrangement are the possible reasons for the observed aggregation-induced TPA enhancement. On the basis of the model molecule, we have designed a series of tetraphenylethene derivatives which differ by donor moieties, connection modes, or central bridges after taking the structure property relationship of TPA mechanism into account. The TPA spectra of the designed molecules have been calculated, and their TPA properties are analyzed at length. Our results suggest that the change of the connection mode of the carbazole group and the introduction of a vinylene or ethynylene linkage into a molecule can enhance TPA intensity greatly. It can be expected that all of the designed molecules could possess high TPA features. This research is helpful for the design of efficient TPA materials.
机译:新型四苯乙烯衍生物及其共价二聚体的双光子吸收(TPA)特性已使用密度泛函响应理论进行了计算。发现分支的线性排列可以引起协同TPA行为。部分平面度和线性排列是观察到的聚集诱导的TPA增强的可能原因。在模型分子的基础上,我们考虑了TPA机理的结构性质关系,设计了一系列的四苯基乙烯衍生物,它们的区别在于给体部分,连接方式或中心桥。已计算出设计分子的TPA光谱,并详细分析了它们的TPA性质。我们的结果表明,咔唑基团连接方式的改变以及分子中引入亚乙烯基或亚乙炔基键合可以大大提高TPA强度。可以预期,所有设计的分子都可以具有较高的TPA功能。这项研究有助于设计有效的TPA材料。

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