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空位图案化与图案化空位:富勒烯在金属表面的可控自组装

Vacancy patterning and patterning vacancies: controlled self-assembly of fullerenes on metal surfaces.

作者信息

Kaiser Alexander, Viñes Francesc, Illas Francesc, Ritter Marcel, Hagelberg Frank, Probst Michael

机构信息

Institute of Ion Physics and Applied Physics, University of Innsbruck, Technikerstrasse 25, A-6020 Innsbruck, Austria.

出版信息

Nanoscale. 2014 Sep 21;6(18):10850-8. doi: 10.1039/c4nr02717e. Epub 2014 Aug 12.

Abstract

A density functional theory study accounting for van der Waals interactions reveals the potential of metal surface vacancies as anchor points for the construction of user-defined 2D patterns of adsorbate molecules via a controlled self-assembly process. Vice versa, energetic criteria indicate the formation of regular adsorbate-induced vacancies after adsorbate self-assembly on clean surfaces. These processes are exemplified by adsorbing C₆₀ fullerene on Al(111), Au(111), and Be(0001) surfaces with and without single, triple, and septuple atom pits. An analysis of vacancy-adatom formation energetics precedes the study of the adsorption processes.

摘要

一项考虑范德华相互作用的密度泛函理论研究表明,金属表面空位有可能作为锚点,通过可控的自组装过程构建吸附分子的用户定义二维图案。反之,能量标准表明,吸附质在清洁表面自组装后会形成规则的吸附质诱导空位。这些过程通过将C₆₀富勒烯吸附在有和没有单原子、三原子和七原子坑的Al(111)、Au(111)和Be(0001)表面得到例证。在研究吸附过程之前,先对空位-吸附原子形成能进行分析。

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