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Characterization of Gold-Sputtered Zinc Oxide Nanorods—a Potential Hybrid Material

机译:溅射金氧化锌纳米棒(一种潜在的杂化材料)的表征

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摘要

Generation of hybrid nanostructures has been attested as a promising approach to develop high-performance sensing substrates. Herein, hybrid zinc oxide (ZnO) nanorod dopants with different gold (Au) thicknesses were grown on silicon wafer and studied for their impact on physical, optical and electrical characteristics. Structural patterns displayed that ZnO crystal lattice is in preferred c-axis orientation and proved the higher purities. Observations under field emission scanning electron microscopy revealed the coverage of ZnO nanorods by Au-spots having diameters in the average ranges of 5–10 nm, as determined under transmission electron microscopy. Impedance spectroscopic analysis of Au-sputtered ZnO nanorods was carried out in the frequency range of 1 to 100 MHz with applied AC amplitude of 1 V RMS. The obtained results showed significant changes in the electrical properties (conductance and dielectric constant) with nanostructures. A clear demonstration with 30-nm thickness of Au-sputtering was apparent to be ideal for downstream applications, due to the lowest variation in resistance value of grain boundary, which has dynamic and superior characteristics.
机译:混合纳米结构的产生已被证明是开发高性能传感基板的一种有前途的方法。在此,在硅晶片上生长了具有不同金(Au)厚度的杂化氧化锌(ZnO)纳米棒掺杂剂,并研究了它们对物理,光学和电学特性的影响。结构图案表明,ZnO晶格处于优选的c轴方向,并证明了较高的纯度。场发射扫描电子显微镜下的观察表明,透射电子显微镜下确定的直径为5-10 nm的平均范围内的Au点覆盖了ZnO纳米棒。 Au溅射的ZnO纳米棒的阻抗谱分析是在1至100MHz的频率范围内进行的,施加的交流幅度为1V RMS。所得结果表明,纳米结构的电性能(电导率和介电常数)发生了显着变化。由于晶界电阻值的变化最小,具有动态和优越的特性,清晰地演示了30纳米厚的金溅射,显然是下游应用的理想选择。

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