Markutsya Sergiy, Lamm Monica H
Ames Laboratory, Iowa State University, Ames, Iowa 50011, USA.
J Chem Phys. 2014 Nov 7;141(17):174107. doi: 10.1063/1.4898625.
We report on a new approach for deriving coarse-grained intermolecular forces that retains the frictional contribution that is often discarded by conventional coarse-graining methods. The approach is tested for water and an aqueous glucose solution, and the results from the new implementation for coarse-grained molecular dynamics simulation show remarkable agreement with the dynamics obtained from reference all-atom simulations. The agreement between the structural properties observed in the coarse-grained and all-atom simulations is also preserved. We discuss how this approach may be applied broadly to any existing coarse-graining method where the coarse-grained models are rigorously derived from all-atom reference systems.
我们报告了一种推导粗粒度分子间力的新方法,该方法保留了传统粗粒化方法通常会舍弃的摩擦贡献。该方法已针对水和葡萄糖水溶液进行了测试,粗粒度分子动力学模拟新实现的结果与参考全原子模拟获得的动力学结果显示出显著的一致性。粗粒度模拟和全原子模拟中观察到的结构性质之间的一致性也得以保留。我们讨论了这种方法如何广泛应用于任何现有的粗粒化方法,其中粗粒度模型是从全原子参考系统严格推导出来的。