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首页> 外文期刊>Materials >Formation of Indium-Doped Zinc Oxide Thin Films Using Ultrasonic Spray Pyrolysis: The Importance of the Water Content in the Aerosol Solution and the Substrate Temperature for Enhancing Electrical Transport
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Formation of Indium-Doped Zinc Oxide Thin Films Using Ultrasonic Spray Pyrolysis: The Importance of the Water Content in the Aerosol Solution and the Substrate Temperature for Enhancing Electrical Transport

机译:使用超声波喷雾热解形成铟掺杂的氧化锌薄膜:气溶胶溶液中的含水量和基板温度的重要性,用于增强电气运输

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摘要

Indium doped zinc oxide [ZnO:In] thin films have been deposited at 430°C on soda-lime glass substrates by the chemical spray technique, starting from zinc acetate and indium acetate. Pulverization of the solution was done by ultrasonic excitation. The variations in the electrical, structural, optical, and morphological characteristics of ZnO:In thin films, as a function of both the water content in the starting solution and the substrate temperature, were studied. The electrical resistivity of ZnO:In thin films is not significantly affected with the increase in the water content, up to 200 mL/L; further increase in water content causes an increase in the resistivity of the films. All films show a polycrystalline character, fitting well with the hexagonal ZnO wurtzite-type structure. No preferential growth in samples deposited with the lowest water content was observed, whereas an increase in water content gave rise to a (002) growth. The surface morphology of the films shows a consistency with structure results, as non-geometrical shaped round grains were observed in the case of films deposited with the lowest water content, whereas hexagonal slices, with a wide size distribution were observed in the other cases. In addition, films deposited with the highest water content show a narrow size distribution.
机译:掺杂氧化锌氧化锌[ZnO:In]薄膜通过化学喷涂技术在430℃下沉积在430℃,从醋酸锌和乙酸铟盐开始。通过超声波激发完成溶液的粉碎。研究了ZnO的电,结构,光学和形态特征的变化:在薄膜中,作为起始溶液和衬底温度的含水量的函数。 ZnO的电阻率:在薄膜中没有显着影响水含量的增加,高达200毫升/升;进一步增加水含量导致薄膜的电阻率增加。所有胶片都显示出多晶特性,与六边形ZnO Wurtzite型结构合适。观察到沉积在最低含水量的样品中的优先生长,而水含量的增加产生了(002)生长。薄膜的表面形态显示与结构结果的一致性,因为在沉积最低含水量的薄膜的情况下观察到非几何形状的圆粒,而在其他情况下观察到具有宽尺寸分布的六边形切片。此外,沉积有最高水含量的薄膜显示出窄尺寸的分布。

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