论文标题

二维和大块冰的电子,介电和光学特性:多尺度仿真研究

Electronic, dielectric and optical properties of two dimensional and bulk ice: a multi-scale simulation study

论文作者

Ghasemi, S., Alihosseini, M., Peymanirad, F., Jalali, H., Ketabi, S. A., Khoeini, F., Neek-Amal, M.

论文摘要

插入纳米孔的水域表现出异常的特性,例如超低介电常数。〜多尺度建模和模拟用于研究各种晶体二维钢和块状冰的介电特性。尽管已经对二维(2D-)IC的结构特性进行了广泛的研究,但对它们的电子和光学性质知之甚少。首先,通过使用密度功能理论(DFT)和密度函数扰动理论(DFPT),我们计算了2D-ICE的关键电子,光学和介电特性。进行DFPT计算,即计算介电常数的离子和电子贡献。对于所有研究的2DICE,发现平面电子介电常数大于平面外介电常数。发现电子响应的平面内介电常数对于所有研究的钢丝都是各向同性的。其次,我们在有限温度下使用分子动力学模拟(MDS)确定了2DICE的偶极介电常数。对于所有研究的2DICE,发现总面外介电常数大于2。在随机相位近似(RPA)的框架内,发现2D-ICE的吸收能范围位于紫外光谱中。为了进行比较,我们还阐明了四种晶冰(ICE VIII,ICE XI,ICE IC和ICE IH)和大量水的电子,介电和光学性质。

The intercalated water into nanopores exhibits anomalous properties such as ultralow dielectric constant.~Multi-scale modeling and simulations are used to investigate the dielectric properties of various crystalline two-dimensional ices and bulk ices. Although, the structural properties of two-dimensional (2D-) ices have been extensively studied, much less is known about their electronic and optical properties. First, by using density functional theory (DFT) and density functional perturbation theory (DFPT), we calculate the key electronic, optical and dielectric properties of 2D-ices. Performing DFPT calculations, both the ionic and electronic contributions of the dielectric constant are computed. The in-plane electronic dielectric constant is found to be larger than the out-of-plane dielectric constant for all the studied 2D-ices. The in-plane dielectric constant of the electronic response is found to be isotropic for all the studied ices. Secondly, we determined the dipolar dielectric constant of 2D-ices using molecular dynamics simulations (MDS) at finite temperature. The total out-of-plane dielectric constant is found to be larger than 2 for all the studied 2D-ices. Within the framework of the random-phase approximation (RPA), the absorption energy ranges for 2D-ices are found to be in the ultraviolet spectra. For the comparison purposes, we also elucidate the electronic, dielectric and optical properties of four crystalline ices (ice VIII, ice XI, ice Ic and ice Ih) and bulk water.

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