首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Effect of (super) alkali doping and boron substitution on the nonlinear optical property of biphenalenyl diradical pi dimer: A theoretical study
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Effect of (super) alkali doping and boron substitution on the nonlinear optical property of biphenalenyl diradical pi dimer: A theoretical study

机译:(超)碱掺杂和硼取代对Biphenalenyl Diphenalyl Dipherical PI二聚体非线性光学性能的影响:理论研究

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A series of novel biphenalenyl diradical dimer have been theoretically designed via linking the (super) alkali to the biphenalenyl diradical dimer with boron substitution. Firstly, we designed three molecules, Li-BC25H18 (1), Na-BC25H15 (2), K-BC25H18 (3). It is revealed that energy gaps (E-gap) between highest occupied molecular orbital (HOMO) and lowest unoccupied molecular orbital (LUMO) of all molecules are in a range of 1.321-1.350 ev. The results indicate that the first hyperpolarizabilities of M-pi dimer (M = Li, Na, K) increase with alkali atom number. Potassium atom can be more powerful in increasing the first hyperpolarizabilities of M-pi dimer. For M3O-pi dimer, they have structural isomers, LiO3BC25H18 (1A, 1B), NaO3-BC25H18 (2A, 3B), KO3-BC25H18 (3A, 3B). Compared with M-BC25H15 (M = Li, Na, K), M3O-BC25H18 (M = Li, Na, K) exhibit a comparable electronic stability except 2A and 3A. Furthermore, introducing superalkali unit M3O as the electron source can lead to larger nonlinear optical response. The results show that M3O-pi dimer exhibit the larger first hyperpolarizability (1616-11,902 au). Therefore, M3O-pi dimer are expected to be potential candidates for NLO materials. We hope that this study could provide a new idea for designing nonlinear optical materials using diradical dimer. (C) 2018 Elsevier GmbH. All rights reserved.
机译:通过将(超级)碱金属加入二苯甲烯基二聚体与硼取代,理论上设计了一系列新的BiphenalenylDiphenalenyl Diradical二聚体。首先,我们设计了三种分子,Li-BC25H18(1),Na-BC25H15(2),K-BC25H18(3)。据透露,所有分子的最高占用分子轨道(HOMO)和最低未占用的分子轨道(LUMO)之间的能量间隙(E-GAP)在1.321-1.350eV的范围内。结果表明,M-PI二聚体(M = Li,Na,K)的第一种超极化性与碱原子数增加。钾原子在增加M-PI二聚体的第一个超极化方面可以更强大。对于M3O-PI二聚体,它们具有结构异构体,LiO 3BC25H18(1A,1B),NaO3-BC25H18(2A,3B),KO3-BC25H18(3A,3B)。与M-BC25H15(M = Li,Na,K)相比,M3O-BC25H18(M = Li,Na,K)表现出除2A和3A之外的比较电子稳定性。此外,作为电子源引入超级展位单元M3O,可以导致较大的非线性光学响应。结果表明,M3O-PI二聚体表现出较大的第一种超极化性(1616-11,902 Au)。因此,预期M3O-PI二聚体是NLO材料的潜在候选者。我们希望本研究可以提供使用Diradical Dimer设计非线性光学材料的新想法。 (c)2018年Elsevier GmbH。版权所有。

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