论文标题
基于Tersoff电位的氧化锆单斜阶段的物理描述
A physical description for the monoclinic phase of zirconia based on the Tersoff potential
论文作者
论文摘要
氧化锆以许多重要的形态众所周知,ZR配位从八角阶段的六倍到立方或四方相的八倍不等。描述这些氧化锆形态的经验潜力的发展是一个重要的问题,但长期以来的挑战成为了对大型氧化锆结构的理论研究的瓶颈。与标准的核心壳模型相反,我们通过远程库仑相互作用和粘结顺序TERSOFF模型的组合为氧化锆开发了新的潜力。 Tersoff电位的键顺序特征使其非常适合描述具有不同配位数的这些氧化锆形态。特别是,具有两个不等氧的复杂单斜相相很难用大多数现有的经验潜力来描述,可以通过这种新发展的潜力来很好地捕获。结果表明,这种潜力可以为各种氧化锆形态的大多数静态和动态特性提供合理的预测。除了其清晰的物理本质外,该电位至少比分子动力学模拟中基于核壳的电位更快,因为它丢弃了需要非常小的时间步骤的超轻外壳的概念。我们还为广泛使用的包装和lammps提供了潜在的脚本。
Zirconia is well-known for plenty of important morphologys with Zr coordination varying from sixfold in the octagonal phase to eightfold in the cubic or tetragonal phase. The development of empirical potentials to describe these zirconia morphologys is an important issue but a long-standing challenge, which becomes a bottleneck for the theoretical investigation of large zirconia structures. In contrast to the standard core-shell model, we develop a new potential for zirconia through the combination of long-range Coulomb interaction and bond order Tersoff model. The bond order characteristic of the Tersoff potential enables it to be well suited for the description of these zirconia morphologys with different coordination numbers. In particular, the complex monoclinic phase with two inequivalent oxygens, that is difficult to be described by most existing empirical potentials, can be well captured by this newly developed potential. It is shown that this potential can provide reasonable predictions for most static and dynamic properties of various zirconia morphologys. Besides its clear physical essence, this potential is at least one order faster than core-shell based potentials in the molecule dynamics simulation, as it discards the concept of the ultralight shell that demands for an extremely small time step. We also provide potential scripts for the widely used packages GULP and LAMMPS.