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Platinum and gold nanostructures on silicon via a self-assembled template

机译:通过自组装模板在硅上形成铂和金纳米结构

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Parallel arrays of self-assembled rare earth disilicides (erbium and dysprosium) nanowires were grown on Si(001) substrates with nanowire width between 3-10 nm and used as a template for fabricating noble metal (platinum and gold) nanostructure arrays. Submonolayer coverage of platinum and gold were deposited on the nanowire/Si(001) surface post rare earth disilicide growth. Scanning tunneling microscopy and reactive ion etching showed that platinum and gold preferentially deposited on the nanowire surface versus the Si surface. Reactive ion etching of erbium disilicide nanowires with and without platinum on the surface demonstrated that platinum acted as a more resistant etch mask than erbium disilicide. By varying the platinum coverage on the surface we demonstrate the ability to select arrays of nanowire or nanocrystal arrays as a function of platinum coverage.
机译:自组装稀土二硅化物(er和)纳米线的平行阵列生长在具有3-10 nm纳米线宽度的Si(001)衬底上,并用作制造贵金属(铂和金)纳米结构阵列的模板。稀土二硅化物生长后,铂和金的亚单层覆盖层沉积在纳米线/ Si(001)表面上。扫描隧道显微镜和反应性离子蚀刻显示,铂和金相对于硅表面优先沉积在纳米线表面。在表面上有和没有铂的情况下,对二硅化er纳米线的反应离子刻蚀表明,与二硅化icide相比,铂的耐蚀性更高。通过改变表面上的铂覆盖率,我们证明了根据铂覆盖率选择纳米线或纳米晶体阵列的能力。

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