周期边界条件
分子动力学
离子液体
厚板
离子键合
超级电容器
常量(计算机编程)
加速
边值问题
材料科学
计算化学
化学
离子
电化学
计算机科学
物理
电极
数学
物理化学
数学分析
并行计算
生物化学
有机化学
地球物理学
程序设计语言
催化作用
作者
Shern Ren Tee,Debra J. Searles
摘要
Molecular dynamics (MD) simulations of complex electrochemical systems, such as ionic liquid supercapacitors, are increasingly including the constant potential method (CPM) to model conductive electrodes at a specified potential difference, but the inclusion of CPM can be computationally expensive. We demonstrate the computational savings available in CPM MD simulations of ionic liquid supercapacitors when the usual non-periodic slab geometry is replaced with fully periodic boundary conditions. We show how a doubled cell approach, previously used in non-CPM MD simulations of charged interfaces, can be used to enable fully periodic CPM MD simulations. Using either a doubled cell approach or a finite field approach previously reported by others, fully periodic CPM MD simulations produce comparable results to the traditional slab geometry simulations with a nearly double speedup in computational time. Indeed, these savings can offset the additional cost of the CPM algorithm, resulting in periodic CPM MD simulations that are computationally competitive with the non-periodic, fixed charge equivalent simulations for the ionic liquid supercapacitors studied here.
科研通智能强力驱动
Strongly Powered by AbleSci AI