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首页> 外文期刊>The Journal of Chemical Physics >Polarizabilities and van der Waals C-6 coefficients of fullerenes from an atomistic electrodynamics model: Anomalous scaling with number of carbon atoms
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Polarizabilities and van der Waals C-6 coefficients of fullerenes from an atomistic electrodynamics model: Anomalous scaling with number of carbon atoms

机译:原子电动力学模型中富勒烯的极化率和范德华斯C-6系数:碳原子数的反常缩放

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摘要

The van der Waals C-6 coefficients of fullerenes are shown to exhibit an anomalous dependence on the number of carbon atoms N such that C-6 proportional to N-2.2 as predicted using state-of-the-art quantum mechanical calculations based on fullerenes with small sizes, and N-2.75 as predicted using a classical-metallic spherical-shell approximation of the fullerenes. We use an atomistic electrodynamics model where each carbon atom is described by a polarizable object to extend the quantum mechanical calculations to larger fullerenes. The parameters of this model are optimized to describe accurately the static and complex polarizabilities of the fullerenes by fitting against accurate ab initio calculations. This model shows that C-6 proportional to N-2.8, which is supportive of the classical-metallic spherical-shell approximation. Additionally, we show that the anomalous dependence of the polarizability on N is attributed to the electric charge term, while the dipole-dipole term scales almost linearly with the number of carbon atoms. Published by AIP Publishing.
机译:富勒烯的范德华斯C-6系数显示出对碳原子数N的反常依赖性,因此C-6与基于N-2.2的碳原子成正比,这是基于基于富勒烯的最新量子力学计算所预测的尺寸较小,使用富勒烯的经典金属球壳近似法预测的N-2.75。我们使用原子电动力学模型,其中每个碳原子由一个可极化的物体描述,以将量子力学计算扩展到更大的富勒烯。该模型的参数经过优化,可以通过精确的从头算计算来准确描述富勒烯的静态和复杂极化率。该模型表明C-6与N-2.8成正比,这支持经典金属球壳近似。此外,我们表明极化率对N的异常依赖性归因于电荷项,而偶极子-偶极子项几乎与碳原子数成线性比例关系。由AIP Publishing发布。

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