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Antidot effects on the open-shell characters and second hyperpolarizabilities of rectangular graphene nanoflakes

机译:解毒剂对矩形石墨烯纳米薄片的开壳特性和第二超极化率的影响

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摘要

Using the long-range corrected spin-unrestricted density functional theory method, the impact of antidot structure on the open-shell character and the second hyperpolarizability (γ) of graphene nanoflakes (GNFs) has been investigated for rectangular GNFs with and without antidot structure, referred to as antidot and perfect GNFs, respectively. It is found that the two GNFs exhibit different multiradical characters; the antidot GNF shows intermediate open-shell character in contrast to the perfect GNF presenting nearly pure tetraradical character. This antidot structure dependence of open-shell character can be explained in terms of their natural orbital distributions. Such difference in open-shell characters affects their γ values; the γ of the antidot GNF is about 1.7 times larger than that of the perfect GNF, the feature of which is in agreement with our previous results on the diradical character dependence of γ.
机译:使用远程校正的自旋无限制密度泛函理论方法,研究了具有和没有抗斑点结构的矩形GNF的抗斑点结构对石墨烯纳米薄片(GNF)的开壳特性和第二超极化率(γ)的影响,分别称为解毒剂和完美GNF。发现两个GNFs表现出不同的多自由基特征。解毒剂GNF具有中等的开壳特性,而完美的GNF具有几乎纯的四自由基特性。开壳特征对解毒点结构的依赖性可以用其自然轨道分布来解释。开壳字符的这种差异会影响其γ值;解毒剂GNF的γ值约为完美GNF的1.7倍,其特征与我们先前对γ的双基特征相关性的结果一致。

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