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Studies of electrosynthesized zinc selenide thin films

机译:电合成硒化锌薄膜的研究

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Zinc selenide (ZnSe) is an important opto-electronic semiconducting material with a wide bandgap of 2.7 eV at room temperature. Even though many techniques are used for the preparation of ZnSe thin films, electrochemical deposition from aqueous solution attracts much attention in recent years, due to its low cost and ability to control the film properties by varying the deposition parameters. The structural and optical properties of ZnSe layers are deeply influenced by the bath parameters in the electrochemical deposition. In the present work, the electrochemical deposition and characterization of zinc selenide thin films are reported. ZnSe thin films were deposited onto tin oxide coated conducting glass substrates from an aqueous solution bath containing ZnSO4 and SeO2. Cyclic voltammetric study was used to optimize the deposition potential range for the co-deposition of zinc and selenium. The optimum deposition conditions to obtain stoichiometric ZnSe thin films were found as: Deposition potential: -0.8 to -1.0 V versus SCE, solution pH. 3.5 +/- 0.1, Bath temperature., 80 degrees C. X-ray diffraction studies reveal cubic ZnSe with a preferred orientation along (111) plane. Raman spectroscopic studies reveal optical phonon peak corresponding to crystalline ZnSe. The effects of deposition parameters such as bath temperature, electrolyte concentration and deposition potential on the properties of ZnSe thin films are studied and the results are discussed.
机译:硒化锌(ZnSe)是一种重要的光电半导体材料,在室温下的带隙为2.7 eV。尽管使用了许多技术来制备ZnSe薄膜,但由于其低成本和通过改变沉积参数来控制薄膜性能的能力,近年来从水溶液中进行电化学沉积仍然引起了人们的广泛关注。 ZnSe层的结构和光学性质受电化学沉积中浴参数的影响很大。在本工作中,报道了硒化锌薄膜的电化学沉积和表征。从包含ZnSO4和SeO2的水溶液浴中,将ZnSe薄膜沉积到涂有氧化锡的导电玻璃基板上。循环伏安法研究用于优化锌和硒共沉积的沉积电位范围。发现获得化学计量的ZnSe薄膜的最佳沉积条件为:沉积电势:相对于SCE,溶液pH值为-0.8至-1.0V。 3.5 +/- 0.1,浴温,80摄氏度。X射线衍射研究显示立方ZnSe具有沿(111)平面的优选取向。拉曼光谱研究显示出对应于晶体ZnSe的光学声子峰。研究了镀液温度,电解液浓度和沉积电势等沉积参数对ZnSe薄膜性能的影响,并讨论了结果。

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