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首页> 外文期刊>Nanotechnology >Layer-by-layer growth of sodium chloride overlayers on an Fe(001)-p(1 × 1)O surface
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Layer-by-layer growth of sodium chloride overlayers on an Fe(001)-p(1 × 1)O surface

机译:Fe(001)-p(1×1)O表面上氯化钠覆盖层的逐层生长

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Ultra-thin NaCl films epitaxially grown on an Fe(001)-p(1 × 1)O surface have been investigated in ultra-high vacuum by non-contact atomic force microscopy and low energy electron diffraction. It has been found that at temperatures below 145 °C NaCl initially grows as monoatomic thick islands on substrate terraces, while at temperatures above 175 °C biatomic thick islands are also formed at substrate step edges. Both types of islands have the same Fe(001)-O[100] ∥ NaCl(001)[110] orientation, leading to a (4 × 4) superstructure, where the NaCl unit cell is oriented at 45° with respect to the substrate. Interestingly, no c(2 × 2) superstructure with the NaCl unit cell oriented at 0° has been observed. The oxygen on the iron surface promotes layer-by-layer growth, resulting in atomically flat films with 40-60 nm wide terraces at coverages ranging from 0.75 to 12 ML. Such NaCl films are of much higher quality than MgO films grown on Fe(001) and Fe(001)-p(1 × 1)O surfaces and represent a unique epitaxial system of an alkali halide on a pure metallic substrate. The reduced number of defects and the layer-by-layer mode of growth make this system very attractive for applications where an atomically defined tunnel barrier is required to control the properties of a device.
机译:通过非接触原子力显微镜和低能电子衍射在超高真空下研究了外延生长在Fe(001)-p(1×1)O表面上的超薄NaCl薄膜。已经发现,在低于145°C的温度下,NaCl最初以单原子厚岛的形式在基底平台上生长,而在高于175°C的温度下,双原子厚岛也形成于基底台阶边缘。两种类型的岛都具有相同的Fe(001)-O [100]∥NaCl(001)[110]取向,导致形成(4×4)超结构,其中NaCl晶胞相对于NaCl取向为45°。基质。有趣的是,没有观察到NaCl晶胞取向为0°的c(2×2)超结构。铁表面上的氧气促进了逐层生长,从而形成了原子平坦的薄膜,其具有40-60 nm宽的台阶,覆盖范围为0.75至12 ML。这种NaCl薄膜的质量要比在Fe(001)和Fe(001)-p(1×1)O表面上生长的MgO薄膜质量高得多,并且代表了纯金属基材上卤化碱的独特外延系统。缺陷数量的减少和逐层增长的模式使该系统对于需要原子定义的隧道势垒来控制器件性能的应用非常有吸引力。

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