Institut für Thermodynamik, Technische Universität Braunschweig, Hans-Sommer-Straße 5, D-38106 Braunschweig, Germany.
J Chem Inf Model. 2020 Dec 28;60(12):6033-6043. doi: 10.1021/acs.jcim.0c01093. Epub 2020 Nov 2.
Despite the high advances of classical molecular simulation to study bulk phases, classical force fields (FFs) to describe interactions at interfaces are rarely available in the literature. In this study, FFs to describe fluid | solid interfaces are developed by matching forces and energies from ab initio simulation and by using a newly developed genetic algorithm (GA). The interfacial FFs are parameterized to be combined with existing classical bulk FFs. Our procedure is tested on the methanol (CHOH) | ZnO interface. The results for the forces, energies, and some structural adsorption properties calculated using an own parameterized interfacial FF are comparable with results from ab initio and experimental data. With this, we illustrate the potential of the proposed procedure to yield accurate models for interfacial systems to be combined with available bulk FFs.
尽管经典分子模拟在研究体相方面取得了很高的进展,但在文献中很少有用于描述界面相互作用的经典力场(FFs)。在这项研究中,通过匹配从头算模拟的力和能,并使用新开发的遗传算法(GA),开发了用于描述流体|固体界面的 FFs。将界面 FFs 参数化以与现有的经典体相 FFs 结合使用。我们的程序在甲醇(CHOH)| ZnO 界面上进行了测试。使用自己参数化的界面 FF 计算的力、能和一些结构吸附性质的结果与从头算和实验数据的结果相当。通过这种方式,我们说明了所提出的程序在结合可用的体相 FFs 生成用于界面系统的准确模型方面的潜力。