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On the proper calculation of electrostatic interactions in solid-supported bilayer systems

机译:关于固体支撑双层体系中静电相互作用的正确计算

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摘要

Modeling systems that are not inherently isotropic, e.g., extended bilayers, using molecular simulation techniques poses a potential problem. Since these methods rely on a finite number of atoms and molecules to describe the system, periodic boundary conditions are implemented to avoid edge effects and capture long-range electrostatic interactions. Systems consisting of a solvated bilayer adsorbed on a solid surface and exposed to an airvacuum interface occur in many experimental settings and present some unique challenges in this respect. Here, we investigated the effects of implementing different electrostatic boundary conditions on the structural and electrostatic properties of a quartzwatervacuum interface and a similar quartz-supported hydrated lipid bilayer exposed to vacuum. Since these interfacial systems have a net polarization, implementing the standard Ewald summation with the conducting boundary condition for the electrostatic long-range interactions introduced an artificial periodicity in the out-of-plane dimension. In particular, abnormal orientational polarizations of water were observed with the conducting boundary condition. Implementing the Ewald summation technique with the planar vacuum boundary condition and calculating electrostatic properties compatible with the implemented electrostatic boundary condition removed these inconsistencies. This formulation is generally applicable to similar interfacial systems in bulk solution.
机译:使用分子模拟技术对本质上不是各向同性的系统(例如扩展的双层)进行建模存在潜在的问题。由于这些方法依赖于有限数量的原子和分子来描述系统,因此采用周期性边界条件来避免边缘效应并捕获远距离静电相互作用。由吸附在固体表面并暴露于空气真空界面的溶剂化双层组成的系统在许多实验环境中均会出现,并在这方面提出了一些独特的挑战。在这里,我们调查了实施不同的静电边界条件对石英水真空界面和暴露于真空的类似石英支撑的水合脂质双层的结构和静电性能的影响。由于这些界面系统具有净极化,因此在静电远距离相互作用的传导边界条件下实施标准的Ewald求和,在平面外尺寸中引入了人工周期性。特别地,在传导边界条件下观察到异常的水取向极化。用平面真空边界条件实施Ewald求和技术并计算与所实现的静电边界条件兼容的静电性能可消除这些不一致之处。该配方通常适用于本体溶液中的类似界面系统。

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