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基于 gd 合金的 au111 纳米模板。

Au111-based nanotemplates by gd alloying.

机构信息

Donostia International Physics Center (DIPC), Paseo Manuel de Lardizabal 4, 20018 San Sebastian, Spain.

出版信息

ACS Nano. 2010 Mar 23;4(3):1603-11. doi: 10.1021/nn901345s.

Abstract

A new class of nanostructured templates is obtained by submitting Au111 films to high-temperature vapor deposition of Gd in ultrahigh vacuum. In a low coverage regime, Gd atoms are embedded in the topmost Au layer, inducing a structural transformation of the herringbone reconstruction to create a network of trigons. At higher dose, the reactive deposition of Gd leads to the formation of an atomically perfect GdAu2 surface compound characterized by a long-range periodic Moire pattern. Both the trigon and Moire lattices are highly ordered nanostructures, which turned out to be robust templates to grow metal nanodots. As a test example, Co was deposited at room temperature, forming uniform dots that faithfully arrange by following the underlying trigons or Moire periodicity. For the latter, one can achieve nanodot arrays that exhibit record areal density.

摘要

通过在超高真空下将 Au111 薄膜暴露于 Gd 的高温蒸汽沉积,获得了一类新型纳米结构模板。在低覆盖率的情况下,Gd 原子嵌入最顶层的 Au 层中,导致鱼骨状重构发生结构转变,形成三角网。在更高剂量下,Gd 的反应性沉积导致形成原子完美的 GdAu2 表面化合物,其特征是具有长程周期性的莫尔图案。三角和莫尔晶格都是高度有序的纳米结构,它们被证明是生长金属纳米点的坚固模板。作为一个测试示例,室温下沉积 Co,形成均匀的点,这些点通过遵循底层三角或莫尔周期性来进行有序排列。对于后者,可以实现具有创纪录面密度的纳米点阵列。

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