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具有斐波那契方网格结构的分子覆盖层。

A molecular overlayer with the Fibonacci square grid structure.

机构信息

Surface Science Research Centre and Department of Physics, University of Liverpool, Liverpool, L69 3BX, UK.

Jeremiah Horrocks Institute for Mathematics, Physics and Astronomy, University of Central Lancashire, Preston, PR1 2HE, UK.

出版信息

Nat Commun. 2018 Aug 24;9(1):3435. doi: 10.1038/s41467-018-05950-7.

Abstract

Quasicrystals differ from conventional crystals and amorphous materials in that they possess long-range order without periodicity. They exhibit orders of rotational symmetry which are forbidden in periodic crystals, such as five-, ten-, and twelve-fold, and their structures can be described with complex aperiodic tilings such as Penrose tilings and Stampfli-Gaehler tilings. Previous theoretical work explored the structure and properties of a hypothetical four-fold symmetric quasicrystal-the so-called Fibonacci square grid. Here, we show an experimental realisation of the Fibonacci square grid structure in a molecular overlayer. Scanning tunnelling microscopy reveals that fullerenes (C) deposited on the two-fold surface of an icosahedral Al-Pd-Mn quasicrystal selectively adsorb atop Mn atoms, forming a Fibonacci square grid. The site-specific adsorption behaviour offers the potential to generate relatively simple quasicrystalline overlayer structures with tunable physical properties and demonstrates the use of molecules as a surface chemical probe to identify atomic species on similar metallic alloy surfaces.

摘要

准晶体与常规晶体和非晶材料的不同之处在于它们具有长程有序而没有周期性。它们表现出旋转对称性的顺序,这在周期性晶体中是被禁止的,如五重、十重和十二重,它们的结构可以用复杂的非周期性镶嵌来描述,如彭罗斯镶嵌和 Stampfli-Gaehler 镶嵌。以前的理论工作探讨了一种假设的四重对称准晶体的结构和性质,即所谓的 Fibonacci 方网格。在这里,我们在一个分子覆盖层中展示了 Fibonacci 方网格结构的实验实现。扫描隧道显微镜揭示了富勒烯(C)沉积在二十面体 Al-Pd-Mn 准晶体的两倍表面上时,选择性地吸附在 Mn 原子上,形成 Fibonacci 方网格。这种特定位置的吸附行为提供了生成具有可调物理性质的相对简单的准晶体覆盖层结构的潜力,并展示了使用分子作为表面化学探针来识别类似金属合金表面上的原子种类的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a677/6109137/2f63750af629/41467_2018_5950_Fig1_HTML.jpg

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