Erdman Natasha, Warschkow Oliver, Asta Mark, Poeppelmeier Kenneth R, Ellis Donald E, Marks Laurence D
Department of Materials Science and Engineering, Institute for Environmental Catalysis, Northwestern University, Evanston, IL 60208-3108, USA.
J Am Chem Soc. 2003 Aug 20;125(33):10050-6. doi: 10.1021/ja034933h.
We report the solution of the c(4 x 2) reconstruction of SrTiO(3) (001), obtained through a combination of high-resolution transmission electron microscopy, direct methods analysis, and density functional theory. The structure is characterized by a single overlayer of TiO(2) stoichiometry in which TiO(5) polyhedra are arranged into edge-shared structures, in contrast to the corner-shared TiO(6) polyhedra in bulk. This structural pattern is similar to that reported by us earlier for the (2 x 1) reconstruction of the same crystal face formed at higher temperature. We discuss probable mechanisms of surface stabilization as revealed by these two solutions which are likely to apply to other reconstructions of SrTiO(3) (001) and, possibly, other perovskites in general.
我们报告了通过高分辨率透射电子显微镜、直接法分析和密度泛函理论相结合获得的SrTiO₃(001)的c(4×2)重构的解决方案。该结构的特征是具有TiO₂化学计量的单个覆盖层,其中TiO₅多面体排列成边共享结构,这与体相中角共享的TiO₆多面体形成对比。这种结构模式与我们之前报道的在较高温度下形成的同一晶面的(2×1)重构相似。我们讨论了这两种解决方案所揭示的表面稳定化的可能机制,这些机制可能适用于SrTiO₃(001)的其他重构,并且可能一般适用于其他钙钛矿。