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Lateral alumina templates for carbon nanotubes and semiconductor nanowires synthesis

机译:用于碳纳米管和半导体纳米线合成的横向氧化铝模板

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We present here, a novel approach for the membrane-based synthesis, also called template synthesis of arrays of nanomaterials with monodispersed geometrical features. The basic principle is to grow or generate the desired material inside the pores of a nanoporous alumina membrane. The pores of are synthesised parallel to the surface of the substrate by performing the anodic oxidation of an aluminium thin film laterally, i.e. parallel to the surface of the substrate, instead of perpendicular as usually done. We obtain highly regular and ordered pore arrays, with a minimum pore size in the range of ~ 3 to 4 nm, which to the best of our knowledge is the smallest reported to date for anodic alumina membranes. After anodic oxidation, the pores of the lateral alumina membranes have been electrochemically "filled" with Te nanowires. Such porous alumina structures may allow to controll the in-plane organisation of arrays of template-grown nanowires and carbon nanotubes for reproducible device fabrication.
机译:我们在这里介绍一种基于膜的合成的新方法,也称为具有单分散几何特征的纳米材料阵列的模板合成。基本原理是在纳米多孔氧化铝膜的孔内生长或生成所需的材料。通过横向(即平行于基板表面)而不是通常垂直进行铝薄膜的阳极氧化,平行于基板表面合成孔。我们获得了高度规则和有序的孔阵列,最小孔径在3-4 nm范围内,据我们所知,这是迄今为止阳极氧化铝膜最小的。阳极氧化后,侧面的氧化铝膜的孔已用Te纳米线电化学“填充”。这样的多孔氧化铝结构可以允许控制用于可再现的器件制造的模板生长的纳米线和碳纳米管的阵列的平面内组织。

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