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Surface alloys, overlayer and incommensurate structures of Bi on Cu(111)

机译:Cu(111)上Bi的表面合金,覆盖层和不等价结构

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Using surface X-ray diffraction, we have determined the structure of three different sub-monolayer phases of Bi on Cu(111). In contrast to an early report, we find that at a coverage of 1/3 monolayer a substitutional surface alloy is formed with a (root3 x root3)R30degrees unit cell. For increasing coverage, de-alloying occurs, leading to an overlayer structure at a coverage of 0.5 ML in which the Bi atoms form zigzag chains. The surface contains three domains of this ((2 0)(1 2))phase. Finally, at a slightly higher coverage of 0.53 ML, the((2 0) (1 2))unit cell is compressed in one direction, leading to a uniaxial-incommensurate phase with three rotational domains. The structure determination includes relaxations in the topmost layers and therefore allows a detailed comparison of the most important bond distances. This shows that an increased charge density of the Cu(111) surface is the main driving force for the different phases. (C) 2004 Elsevier B.V. All rights reserved.
机译:使用表面X射线衍射,我们已经确定了Cu(111)上Bi的三个不同的亚单层相的结构。与早期的报告相反,我们发现在覆盖范围为1/3单层的情况下,形成了具有(root3 x root3)R30度晶胞的替代表面合金。为了增加覆盖范围,会发生脱合金,导致覆盖层结构为0.5 ML,其中Bi原子形成锯齿形链。该表面包含此((2 0)(1 2))相的三个域。最后,在0.53 ML的较高覆盖率下,((2 0)(1 2))晶胞在一个方向上被压缩,导致具有三个旋转域的单轴不相称相。结构确定包括最顶层的松弛,因此可以对最重要的键距进行详细比较。这表明,Cu(111)表面电荷密度的增加是不同相的主要驱动力。 (C)2004 Elsevier B.V.保留所有权利。

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