Kwon Hyuk-Yong, Morrow Zachary, Kelley C T, Jakubikova Elena
Department of Chemistry, North Carolina State University, Raleigh, North Carolina 27695, United States.
Department of Mathematics, North Carolina State University, Raleigh, North Carolina 27695, United States.
J Phys Chem A. 2021 Nov 18;125(45):9725-9735. doi: 10.1021/acs.jpca.1c06812. Epub 2021 Nov 3.
The concept of a potential energy surface (PES) is one of the most important concepts in modern chemistry. A PES represents the relationship between the chemical system's energy and its geometry (i.e., atom positions) and can provide useful information about the system's chemical properties and reactivity. Construction of accurate PESs with high-level theoretical methodologies, such as density functional theory, is still challenging due to a steep increase in the computational cost with the increase of the system size. Thus, over the past few decades, many different mathematical approaches have been applied to the problem of the cost-efficient PES construction. This article serves as a short overview of interpolative methods for the PES construction, including global polynomial interpolation, trigonometric interpolation, modified Shepard interpolation, interpolative moving least-squares, and the automated PES construction derived from these.
势能面(PES)的概念是现代化学中最重要的概念之一。势能面表示化学系统的能量与其几何结构(即原子位置)之间的关系,并且可以提供有关该系统化学性质和反应活性的有用信息。使用诸如密度泛函理论等高阶理论方法构建精确的势能面仍然具有挑战性,因为随着系统规模的增加,计算成本会急剧上升。因此,在过去几十年中,许多不同的数学方法已被应用于高效构建势能面的问题。本文简要概述了用于构建势能面的插值方法,包括全局多项式插值、三角插值、改进的谢泼德插值、插值移动最小二乘法以及由此衍生的自动构建势能面方法。