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Study of frequency dependent electrical properties of ZnO nanorods

机译:ZnO纳米棒的频率相关电学特性研究

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Purpose - The purpose of the current research is to use impedance spectroscopy to study the AC parameters that varied with frequency such as impedance, dielectric constant and conductivity of ZnO nanorods MSM structure in the range of 1Hz to 10MHz under atmospheric conditions. Design/methodology/ approach - ZnO nanorods were grown on glass substrate using low cost sol-gel method. 0.35M seed solution was prepared by dissolving zinc acetate dihydrate in 2-methoxyethanol and monoethanolamine which acts as a stabilizer was added drop-wise. Prior to the deposition, glass slide was cut into pieces of 1.5cm×2cm. Ultra-sonication process is used to clean the glass substrate using acetone, ethanol, and de-ionized (DI) water for 5min. The prepared seed solution was coated on glass substrate using spin coater at spinning speed of 3000rpm for 30s and then dried at 250°C for 10min followed by annealing at 550°C for 2h. The hydrothermal growth was carried out in aqueous solution of zinc nitrate hexahydrate (25mM), hexamethyltetramine (25mM). Findings - ZnO nanorods were characterized using scanning electron microscope (SEM), X-ray diffraction (XRD) and impedance spectroscopy. The real part of impedance (Z') showed two semicircles that correspond to the distribution of the grain boundaries and electrode process. SEM image showed the densely packed ZnO nanorods on the surface of glass substrate, whereas XRD revealed the grown nanorods have c-axis orientation. The results show that the impedance dielectric increases as the frequency decreases while the conductivity showed the opposite behavior. Originality/value - This paper demonstrates the electron transport mechanism of ZnO nanorods at room temperature to understand the frequency dependent parameters.
机译:目的-当前研究的目的是使用阻抗谱研究在大气条件下频率在1Hz至10MHz范围内随频率变化的交流参数,例如阻抗,介电常数和ZnO纳米棒MSM结构的电导率。设计/方法/方法-使用低成本的溶胶-凝胶法在玻璃基板上生长ZnO纳米棒。通过将乙酸锌二水合物溶解在2-甲氧基乙醇中来制备0.35M种子溶液,并逐滴添加作为稳定剂的单乙醇胺。在沉积之前,将载玻片切成1.5cm×2cm的片。超声处理用于使用丙酮,乙醇和去离子(DI)水清洁玻璃基板5分钟。使用旋转涂布机以3000rpm的旋转速度将制备的种子溶液涂布在玻璃基板上30秒,然后在250℃下干燥10min,然后在550℃下退火2h。水热生长在硝酸锌六水合物(25mM),六甲基四胺(25mM)的水溶液中进行。研究结果-ZnO纳米棒使用扫描电子显微镜(SEM),X射线衍射(XRD)和阻抗谱进行了表征。阻抗的实部(Z')显示出两个半圆形,分别对应于晶界和电极工艺的分布。 SEM图像显示在玻璃基板表面上密集堆积的ZnO纳米棒,而XRD显示生长的纳米棒具有c轴方向。结果表明,阻抗电介质随着频率的降低而增加,而电导率却表现出相反的行为。原创性/价值-本文演示了ZnO纳米棒在室温下的电子传输机理,以了解频率相关的参数。

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