Department of Materials Science and Engineering, Northwestern University, Evanston, Illinois 60208, USA.
J Chem Phys. 2012 Jun 7;136(21):214701. doi: 10.1063/1.4719212.
Density functional theory is used to simulate high-bias, constant-current scanning tunneling micrographs for direct comparison with experimental images. Coupled to previous spectroscopic data, these simulations are used to determine the atomic structure of Ti-rich nanostructures on strontium titanate (001) surfaces. These nanostructures have three consecutive TiO(x) surface layers and exploit the distinctive structural motif of the c(4 × 2) reconstruction as their main building block. A structural model of a characteristic triline defect is also proposed.
密度泛函理论被用于模拟高偏压、恒流扫描隧道显微镜图像,以便与实验图像进行直接比较。结合以前的光谱数据,这些模拟被用于确定富钛纳米结构在钛酸锶(001)表面的原子结构。这些纳米结构具有三个连续的 TiO(x) 表面层,并利用 c(4 × 2) 重构的独特结构特征作为其主要构建块。还提出了一种典型三线缺陷的结构模型。