Department of Materials Science and Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
Phys Rev E. 2018 Apr;97(4-1):043304. doi: 10.1103/PhysRevE.97.043304.
Diffusion-induced phase transitions typically change the lattice symmetry of the host material. In battery electrodes, for example, Li ions (diffusing species) are inserted between layers in a crystalline electrode material (host). This diffusion induces lattice distortions and defect formations in the electrode. The structural changes to the lattice symmetry affect the host material's properties. Here, we propose a 2D theoretical framework that couples a Cahn-Hilliard (CH) model, which describes the composition field of a diffusing species, with a phase-field crystal (PFC) model, which describes the host-material lattice symmetry. We couple the two continuum models via coordinate transformation coefficients. We introduce the transformation coefficients in the PFC method to describe affine lattice deformations. These transformation coefficients are modeled as functions of the composition field. Using this coupled approach, we explore the effects of coarse-grained lattice symmetry and distortions on a diffusion-induced phase transition process. In this paper, we demonstrate the working of the CH-PFC model through three representative examples: First, we describe base cases with hexagonal and square symmetries for two composition fields. Next, we illustrate how the CH-PFC method interpolates lattice symmetry across a diffuse phase boundary. Finally, we compute a Cahn-Hilliard type of diffusion and model the accompanying changes to lattice symmetry during a phase transition process.
扩散诱导的相变通常会改变主体材料的晶格对称性。例如,在电池电极中,锂离子(扩散物种)插入到晶体电极材料(主体)的层之间。这种扩散会在电极中引起晶格畸变和缺陷形成。晶格对称性的结构变化会影响主体材料的性质。在这里,我们提出了一个二维理论框架,将描述扩散物种组成场的 Cahn-Hilliard(CH)模型与描述主体材料晶格对称性的相场晶体(PFC)模型相结合。我们通过坐标变换系数将这两个连续体模型耦合起来。我们在 PFC 方法中引入变换系数来描述仿射晶格变形。这些变换系数被建模为组成场的函数。通过使用这种耦合方法,我们探索了粗化晶格对称性和变形对扩散诱导的相变过程的影响。在本文中,我们通过三个代表性的例子展示了 CH-PFC 模型的工作原理:首先,我们描述了两个组成场具有六边形和正方形对称性的基本情况。接下来,我们说明了 CH-PFC 方法如何在扩散相边界上插值晶格对称性。最后,我们计算了 Cahn-Hilliard 类型的扩散,并在相变过程中模拟了伴随的晶格对称性变化。