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Facile Synthesis of ZnO Thin Films at Low Temperatures Using an Additive-Free Electrochemical Oxidation Method

机译:使用无添加电化学氧化方法,在低温下进行ZnO薄膜的合成

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Because of their simplicity and low equipment costs, various oxidation methods can be used to create metal oxides, but they still require long processing times and/or high temperatures. In this study, a new electrochemical oxidation (ECO) method, which oxidizes metal in DI water with a constant flowing current to both the cathode and anode, was developed to overcome the disadvantages of conventional oxidation methods. The mechanism of the ECO method is discussed. Metallic Zn films were oxidized by the ECO method in DI water for 1 h. The DI water temperature was varied from 30 to 90 °C to determine the optimal temperature for the ECO process. Increasing the temperature of the DI water led to distinct surface changes in the disk-shaped Zn plate. The intensity of diffraction peaks from the ZnO (002) plane gradually increased from 31.67 to 2806.48. The structural and optical properties of the ZnO thin film were enhanced as the temperature of the DI water approached 90 °C, which means that a high-quality ZnO thin film was synthesized using the ECO method at lower temperatures and shorter processing time compared with established oxidation methods. These results confirm the ECO method can be useful for the low-cost fabrication of transparent and flexible optoelectronic devices.
机译:由于它们的简单性和低设备成本,可以使用各种氧化方法来生成金属氧化物,但它们仍然需要较长的处理时间和/或高温。在本研究中,开发了一种新的电化学氧化(ECO)方法,该方法通过恒定的流向阴极和阳极的电流来氧化去离子水中的金属,以克服传统氧化方法的缺点。讨论了ECO法的机理。用ECO法在去离子水中氧化金属锌膜1小时。去离子水温度在30至90°C之间变化,以确定ECO工艺的最佳温度。随着去离子水温度的升高,圆盘状锌板的表面发生了明显的变化。ZnO(002)面衍射峰的强度从31.67逐渐增加到2806.48。当去离子水的温度接近90°C时,ZnO薄膜的结构和光学性质增强,这意味着与现有的氧化方法相比,使用ECO方法在较低的温度和较短的加工时间下合成了高质量的ZnO薄膜。这些结果证实了ECO方法可用于低成本制造透明和柔性光电器件。

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