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The kinetic of photoreactions in zinc oxide microrods

机译:氧化锌微孔中的光电反应动力学

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Zinc oxide is the oldest sensing material used in the chemical resistive gas sensors which allow to detect many gases, such as carbon oxide, nitrogen oxides and other. This material is also widely used in medicine and daily life as antibacterial agent. For this reason this semiconductor is often synthesized on the polymer substrates such as foils and textiles. In presented results zinc oxide was deposited on the surface of poly(ethylene terephthalate) foil to obtain antibacterial material. As synthesis method chemical bath deposition was chosen. The growth of zinc oxide structures was carried out in water solution of zinc nitrate (V) and hexamethylenetetramine in 90°C during 9 h. Because antibacterial properties of ZnO are strongly depended on photocatalytic and electric properties of this semiconductor impedance spectroscopy measurements were carried out. During the measurements material was tested with and without UV light to determinate the kinetic of photoreactions in zinc oxide. Moreover the composite was analyzed by XRD diffraction and scanning electron microscope. The X-ray analysis indicated that obtained material has the structure of wurtzite which is typical of zinc oxide. SEM images showed that on the PET foil microrods of ZnO were formed. The impedance spectroscopy measurements of ZnO layer showed that in UV light significant changes in the conductivity of the material are observed.
机译:氧化锌是化学电阻气体传感器中使用的最旧的传感材料,其允许检测许多气体,例如碳氧化物,氮氧化物和其他气体。该材料也广泛用于药物和日常生活中作为抗菌剂。因此,该半导体通常在聚合物基材上合成,例如箔和纺织品。在呈现的结果中,氧化锌沉积在聚(对苯二甲酸乙二醇酯)箔的表面上以获得抗菌材料。作为合成方法选择化学浴沉积。氧化锌结构的生长在9小时内在90℃下在硝酸锌(V)和六亚甲基四胺的水溶液中进行。因为ZnO的抗菌性能强烈地依赖于光催化和该半导体阻抗光谱测量的光催化和电性能。在测量期间,用紫外线测试材料,以确定氧化锌中的光电反应动力学。此外,通过XRD衍射和扫描电子显微镜分析复合材料。 X射线分析表明,得到的材料具有诸如氧化锌的纯锡的结构。 SEM图像显示,在形成ZnO的PET箔微管中。 ZnO层的阻抗光谱测量结果显示,在紫外线中,观察到材料的电导率的显着变化。

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