首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Intra- and Intermolecular Charge Transfer in a Novel Dimer: Cooperatively Enhancing Second-Order Optical Nonlinearity
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Intra- and Intermolecular Charge Transfer in a Novel Dimer: Cooperatively Enhancing Second-Order Optical Nonlinearity

机译:新型二聚体中的和分子间电荷转移:合作增强二阶光学非线性

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摘要

Based on s-indaceno[1,2,3-cd;5,6,7-c'd']diphenalene (1) consisting of two phenalenyl moieties, the monomer 2 and its dimer 2(2) are designed by boron and nitrogen atoms substituting the central carbon atoms of phenalenyl moieties. Calculated energy decompose analysis (EDA) shows that the orbital interaction for 2(2) possesses a large attractive contribution of-18.31 kcal mol(-1), which is dominated by the pi-pi stacking interaction between the upper and the lower pi-conjugated units. Interestingly, the natural population analysis (NPA) charge and the transition density matrix (TDM) show that both intramolecular charge transfer and intermolecular charge transfer (CT) exist in 2(2). Further, the first hyperpolarizability (beta(tot) = 4.56 X 10(4) au) of 2 with intramolecular CT is greatly larger than that of reported molecule 3 (5.45 X 10(3) au) with intermolecular CT. Significantly, 2(2) exhibits the largest beta(tot) value to be 1.42 x 10(5) au, which is caused by combining the intra- and intermolecular CT transitions (beta(x) = 1.40 x 10(5) au and fix = 2.27 x 10(4) au). Correspondingly, highest occupied molecular orbital (HOMO) -> lowest unoccupied molecular orbital (LUMO) (intramolecular CT) in the low-energy electronic transition of 2(2) is 68%, while HOMO -> LUMO + 1 (intermolecular CT) is 18%, which demonstrates that the intramolecular CT effect on the beta(tot) value is stronger than the case of the intermolecular CT effect. The present work might provide rich insight into designing and developing potential second-order optical nonlinearity materials with inter- and intramolecular CT characters.
机译:基于S-Indaceno [1,2,3-CD; 5,6,7-C'd']二苯甲烯(1)由两种吩苯基部分组成,单体2及其二聚体2(2)由硼设计设计氮原子用酚烯基部分代替中央碳原子。计算的能量分解分析(EDA)表明,2(2)的轨道相互作用具有18.31 kcal摩尔(-1)的大有吸引力贡献,其主要由上部和下部PI之间的PI-PI堆叠相互作用为主。共轭单位。有趣的是,天然人口分析(NPA)电荷和过渡密度基质(TDM)表明分子内电荷转移和分子间电荷转移(CT)存在于2(2)中。此外,具有分子内CT的2的第一种高分子化(β(Tot)= 4.56×10(4)Au)大大大于报道的分子3(5.45×10(3)Au)的分子分子CT。显着,2(2)表现出最大的β(Tot)值为1.42×10(5)Au,其是由组合和分子间CT转变(β(x)= 1.40×10(5)Au和FIX = 2.27 x 10(4)AU)。相应地,在2(2)的低能量电子转换中,最高占用的分子轨道(HOMO) - >最低未占用的分子轨道(LUMO)(分子内CT)为68%,而HOMO-> Lumo + 1(分子间CT)是18%,表明对β(Tot)值对β(Tot)值的影响比分子间CT效应的效果强。目前的工作可能提供丰富的洞察,并具有与分子内CT字符相互作用的设计和开发潜在的二阶光学非线性材料。

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