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首页> 外文期刊>The Journal of Chemical Physics >Local electric dipole moments for periodic systems via density functional theory embedding
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Local electric dipole moments for periodic systems via density functional theory embedding

机译:周期性系统局部电偶极矩的密度泛函理论嵌入。

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摘要

We describe a novel approach for the calculation of local electric dipole moments for periodic systems. Since the position operator is ill-defined in periodic systems, maximally localized Wannier functions based on the Berry-phase approach are usually employed for the evaluation of local contributions to the total electric dipole moment of the system. We propose an alternative approach: within a subsystem-density functional theory based embedding scheme, subset electric dipole moments are derived without any additional localization procedure, both for hybrid and non-hybrid exchange-correlation functionals. This opens the way to a computationally efficient evaluation of local electric dipole moments in (molecular) periodic systems as well as their rigorous splitting into atomic electric dipole moments. As examples, Infrared spectra of liquid ethylene carbonate and dimethyl carbonate are presented, which are commonly employed as solvents in Lithium ion batteries. (C) 2014 AIP Publishing LLC.
机译:我们描述了一种新颖的方法来计算周期系统的局部电偶极矩。由于位置算子在周期系统中定义不明确,因此通常采用基于Berry相法的最大局部Wannier函数来评估对系统总电偶极矩的局部贡献。我们提出了另一种方法:在基于子系统密度泛函理论的嵌入方案中,无需混合定位和非混合交换相关函数,就无需任何其他本地化过程即可导出子集电偶极矩。这为(分子)周期系统中局部电偶极矩的计算有效评估以及将其严格分裂成原子电偶极矩开辟了道路。例如,给出了液态碳酸亚乙酯和碳酸二甲酯的红外光谱,它们通常用作锂离子电池的溶剂。 (C)2014 AIP Publishing LLC。

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