Celis Joran, Cao Wei
Nano and Molecular Systems Research Unit, Faculty of Science, University of Oulu, FIN-90014 Oulu, Finland.
J Chem Theory Comput. 2024 Mar 26;20(6):2377-2389. doi: 10.1021/acs.jctc.3c00932. Epub 2024 Mar 6.
Periodic boundary conditions in density functional theory (DFT)-based modeling of bilayer van der Waals heterostructures introduce an artificial lock to a metastable configuration. Depending on the initial supercell, geometric optimization may reach local energy minima at a fixed twist-angle in a restricted strain-space. In this work, an algorithm was introduced for generating a complete scope of ways to combine two monolayer unit cells into a common supercell. In its application to γ-PC/WS, 18,123 bilayer supercells were derived, for which the constituting monolayers possessed isotropic strains, anisotropic strains, or intralayer shear strains. Based on analysis, 45 isotropically strained configurations were carefully chosen for optimization by DFT. Geometric and energetic features and band structures were revealed and compared, following the variations at different strains and twist-angles. As such, this case study brought to resolution the impacts of supercell construction on DFT's outcomes and the merits of in-depth screening of the different options. Repetitions and extensions to the demonstrated approach may be applied to characterize van der Waals heterostructures and derivatives in the future.
在基于密度泛函理论(DFT)的双层范德华异质结构建模中,周期性边界条件会给亚稳态构型引入一种人为限制。根据初始超胞的不同,几何优化可能会在受限应变空间内以固定扭转角达到局部能量最小值。在这项工作中,引入了一种算法,用于生成将两个单层晶胞组合成一个公共超胞的完整方法集。将其应用于γ-PC/WS时,得到了18123个双层超胞,其组成单层具有各向同性应变、各向异性应变或层内剪切应变。基于分析,精心挑选了45个各向同性应变构型通过DFT进行优化。随着不同应变和扭转角的变化,揭示并比较了几何和能量特征以及能带结构。因此,该案例研究解决了超胞构建对DFT结果的影响以及深入筛选不同选项的优点。未来,对所展示方法的重复和扩展可用于表征范德华异质结构及其衍生物。