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Synthesis and Magnetic Characterization of Metal-filled Double-sided Porous Silicon Samples

机译:金属填充的双面多孔硅样品的合成与磁性表征

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摘要

A magnetic semiconductor/metal nanocomposite with a nanostructured silicon wafer as base material and incorporated metallic nanostructures (Ni, Co, NiCo) is fabricated in two electrochemical steps. First, the silicon template is anodized in an HF-electrolyte to obtain a porous structure with oriented pores grown perpendicular to the surface. This etching procedure is carried out either in forming a sample with a single porous layer on one side or in producing a double-sided specimen with a porous layer on each side. Second, this matrix is used for deposition of transition metals as Ni, Co or an alloy of these. The achieved hybrid material with incorporated Ni- and Co-nanostructures within one sample is investigated magnetically. The obtained results are compared with the ones gained from samples containing a single metal.
机译:在两个电化学步骤中,制备了以纳米结构的硅片为基材并结合了金属纳米结构(Ni,Co,NiCo)的磁性半导体/金属纳米复合材料。首先,将硅模板在HF电解质中进行阳极氧化,以获得具有垂直于表面生长的定向孔的多孔结构。该蚀刻步骤是在形成一侧具有单层多孔层的样品或在两侧均具有多孔层的双面样品中进行的。其次,该基质用于沉积过渡金属,如Ni,Co或它们的合金。磁性研究了获得的在一个样品中结合了镍和钴纳米结构的杂化材料。将获得的结果与从包含单一金属的样品获得的结果进行比较。

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