热水参数对silar沉积ZnO样品结构和光学性能的影响

Salih Akyürekli, Tugba Çorlu, İ. KARADUMAN ER, S. Acar
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摘要

本研究采用连续离子层吸附反应(SILAR)法制备ZnO薄膜。SILAR方法是一种基于化学溶液的方法,由4个步骤组成:溶液、热水、空气和去离子水。我们的主要目标是通过从这些步骤中改变热水参数来检查SILAR方法生产的变化。众所周知,化学合成方法及其相关参数对所制备薄膜的尺寸、表面积/体积比、孔隙率以及薄膜中的缺陷都有至关重要的影响,从而影响薄膜的形貌。所有参数保持不变,热水步骤进行改变,热水步骤除采用经典的90℃热水步骤外,采用40℃恒温超声波清洗机、室温超声波清洗机、室温超声波破碎机代替热水步骤。为此,在生产过程中,可以使用超声波清洗机和超声波破碎机等替代设备,在较低的温度下打破不需要的弱键。对其结构、形态、光学和电学性质进行了表征,并对结果进行了详细的研究。
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Influence of the Hot Water Parameter on the Structural and Optical Properties of SILAR-Deposited ZnO Samples
In this study, ZnO thin films were grown by the Successive Ionic Layer Adsorption and Reaction (SILAR) method. The SILAR method is a chemical solution-based method consisting of 4 steps: solution, hot water, air and deionized water. Our main goal is to examine the changes in SILAR method production by changing the hot water parameter from these steps. It is widely known that chemical synthesis methods and their relative parameters have a crucial effect on the size of the produced thin films, surface area/volume ratio, porosity as well as defects in the film which in turn affect the morphology. All parameters were kept the same and changes were made in the hot water step, in addition to the classic 90°C hot water step, constant temperature ultrasonic cleaner at 40 ºC, an ultrasonic cleaner at room temperature, and an ultrasonic breaker at room temperature are used instead of the hot water step. For this purpose, alternative devices such as ultrasonic cleaner and ultrasonic breaker were used to break the unwanted weak bonds at lower temperatures during production. The structural, morphological, optical and electrical properties were characterized and the results were investigated in detail.
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