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Quasicrystalline structure formation in a classical crystalline thin-film system

机译:经典晶体薄膜系统中的准晶体结构形成

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摘要

The discovery of quasicrystals - crystalline structures that show order while lacking periodicity-forced a paradigm shift in crystallography. Initially limited to intermetallic systems, the observation of quasicrystalline structures has recently expanded to include 'soft' quasicrystals in the fields of colloidal and supermolecular chemistry. Here we report an aperiodic oxide that grows as a two-dimensional quasicrystal on a periodic single-element substrate. On a Pt(111) substrate with 3-fold symmetry, the perovskite barium titanate BaTiO_3 forms a high-temperature interface-driven structure with 12-fold symmetry. The building blocks of this dodecagonal structure assemble with the theoretically predicted Stampfli- Gaehler tiling having a fundamental length-scale of 0.69 nm. This example of interface-driven formation of ultrathin quasicrystals from a typical periodic perovskite oxide potentially extends the quasicrystal concept to a broader range of materials. In addition, it demonstrates that frustration at the interface between two periodic materials can drive a thin film into an aperiodic quasicrystalline phase, as proposed previously. Such structures might also find use as ultrathin buffer layers for the accommodation of large lattice mismatches in conventional epitaxy.
机译:准晶体的发现-表现出有序而又缺乏周期性的晶体结构迫使晶体学发生范式转变。最初仅限于金属间体系,近来准晶体结构的观察已扩展到胶体和超分子化学领域中的“软”准晶体。在这里,我们报告一种非周期性氧化物,在周期性单元素衬底上以二维准晶体的形式生长。在具有3倍对称性的Pt(111)衬底上,钙钛矿钛酸钡BaTiO_3形成了具有12倍对称性的高温界面驱动结构。该十二边形结构的构建块与理论上预测的Stampfli-Gaehler平铺装配在一起,其基本长度尺度为0.69 nm。由典型的周期性钙钛矿氧化物以界面驱动方式形成超薄准晶体的示例可能将准晶体概念扩展到更广泛的材料范围。另外,它证明了,如前所述,在两种周期性材料之间的界面处的挫败会驱动薄膜进入非周期性的准晶相。这样的结构也可以用作超薄缓冲层,以适应常规外延中大的晶格失配。

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  • 来源
    《Nature 》 |2013年第7470期| 215-218| 共4页
  • 作者单位

    Institute of Physics, Martin- Luther- Universitaet Halle-Wittenberg, 06120 Halle, Germany;

    Institute of Physics, Martin- Luther- Universitaet Halle-Wittenberg, 06120 Halle, Germany;

    Institute of Physics, Martin- Luther- Universitaet Halle-Wittenberg, 06120 Halle, Germany;

    Institute of Physics, Martin- Luther- Universitaet Halle-Wittenberg, 06120 Halle, Germany;

    Institute of Physics, Martin- Luther- Universitaet Halle-Wittenberg, 06120 Halle, Germany,Max-Planck-lnstitut fur Mikrostrukturphysik, 06120 Halle, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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