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带电界面超胞建模中有限尺寸效应的解析理论。

Analytic theory of finite-size effects in supercell modeling of charged interfaces.

作者信息

Pan Cong, Yi Shasha, Hu Zhonghan

机构信息

State Key Laboratory of Supramolecular Structure and Materials, Jilin University, Changchun, 130012, P. R. China.

出版信息

Phys Chem Chem Phys. 2019 Jul 10;21(27):14858-14864. doi: 10.1039/c9cp02518a.

Abstract

The Ewald3D sum with the tinfoil boundary condition (e3dtf) evaluates the electrostatic energy of a finite unit cell inside an infinitely periodic supercell. Although it has been used as a de facto standard treatment of electrostatics for simulations of extended polar or charged interfaces, the finite-size effect on simulated properties has yet to be fully understood. There is, however, an intuitive way to quantify the average effect arising from the difference between the e3dtf and Coulomb potentials on the response of mobile charges to contact surfaces with fixed charges and/or to an applied external electric field. Although any charged interface formed by mobile countercharges that compensate the fixed charges fluctuates upon a change in the acting electric field, the distance between a pair of oppositely charged interfaces is found to be nearly stationary, which allows an analytic finite-size correction to the amount of countercharges. Application of the theory to solvated electric double layers (insulator/electrolyte interfaces) predicts that the state of complete charge compensation is invariant with respect to solvent permittivities, which is confirmed by a proper analysis of simulation data in the literature.

摘要

采用锡箔边界条件的埃瓦尔德三维求和(e3dtf)可评估无限周期超胞内有限晶胞的静电能。尽管它已被用作扩展极性或带电界面模拟中静电学的实际标准处理方法,但有限尺寸对模拟性质的影响尚未得到充分理解。然而,有一种直观的方法可以量化e3dtf和库仑势之间的差异对移动电荷与固定电荷接触表面以及对施加的外部电场响应所产生的平均效应。尽管由补偿固定电荷的移动反电荷形成的任何带电界面在作用电场变化时都会波动,但发现一对带相反电荷的界面之间的距离几乎是固定的,这使得可以对反电荷量进行解析有限尺寸校正。将该理论应用于溶剂化双电层(绝缘体/电解质界面)预测,完全电荷补偿状态相对于溶剂介电常数是不变的,这一点通过对文献中模拟数据的适当分析得到了证实。

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