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Metal nanowires and hydrogen loading: An AFM-study

机译:金属纳米线和氢负载:AFM研究

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Metal nanowires (Nb, V, Pd and Fe) were studied by atomic force microscopy (AFM). The wires were produced by metal deposition onto faceted sapphire substrates. Periodic arrangements of wires of about 7 × 10~(-8) m width and 3 × 10~(-8) m height, accompanied with a wire length of about 1 × 10~(-3) m were analysed. The grain size was normally about 2 × 10~(-8) m. Prolonged scanning in contact mode leads to massive material agglomeration on the back of the substrate facet. Short-run measurements successfully image the wire morphology but impede an exact determination of the phase transition pressures. At 10~(-2) Pa hydrogen gas pressure, the formation of a hydride along the wire axis of Nb-wires was verified in short-run experiments by AFM images including contour-lines as well as height histograms. The lattice of a 30 nm thin Nb-wire locally expands upon hydride formation with about 2 nm in vertical direction. This result agrees with the predictions of a model assuming linear elasticity, an ideally rigid substrate, and infinitely strong adhesion of the nanowires. No lateral expansion was detectable.
机译:通过原子力显微镜(AFM)研究了金属纳米线(Nb,V,Pd和Fe)。线材是通过金属沉积到多面蓝宝石衬底上制成的。分析了大约7×10〜(-8)m宽度和3×10〜(-8)m高度的电线的周期性排列,以及大约1×10〜(-3)m的电线长度。晶粒大小通常约为2×10〜(-8)m。在接触模式下长时间扫描会导致大量材料在基材小平面背面聚结。短期测量成功地描绘了导线的形态,但阻碍了相变压力的精确确定。在10〜(-2)Pa氢气压力下,通过包括轮廓线和高度直方图的AFM图像,在短期实验中验证了沿Nb线的线轴形成氢化物。 30 nm细的Nb线的晶格在形成氢化物时会在垂直方向上约2 nm处局部扩展。该结果与假设线性弹性,理想的刚性基底以及纳米线的无限强粘合力的模型预测相符。没有检测到横向膨胀。

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