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Role of growth parameters on structural and optical properties of ZnS nanocluster thin films grown by solution growth technique

机译:生长参数对溶液生长技术生长的ZnS纳米簇薄膜结构和光学性能的影响

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In this study, the nanosized ZnS thin films that can be used for fabrication of blue light-emitting diodes, electro-optic modulators, and n-window layers of solar cells were grown by the solution growth technique (SGT), and their structural and optical properties were examined. Based on the results obtained, the quantum size effects of ZnS were systematically investigated. Governing factors related to the growth condition were the concentration of precursor solution, growth temperature, concentration of aq. ammonia and growth duration. X-ray diffraction patterns showed that the ZnS thin film obtained in this study had the cubic structure (beta-ZnS). With decreasing growth temperature and decreasing concentration of precursor solution, the surface morphology of film was found to improve. In particular, this is the first time that the surface morphology dependence of ZnS film grown by SGT on the ammonia concentration is reported. The energy band gaps of samples were determined from the optical transmittance values, and were shown to vary from 3.69 to 3.91 eV. These values were substantially higher than 3.65 eV of bulk ZnS demonstrating that the quantum size effect of SGT grown ZnS is remarkable. (C) 2002 Published by Elsevier Science B.V. [References: 23]
机译:在这项研究中,可通过溶液生长技术(SGT)生长可用于制造蓝色发光二极管,电光调制器和太阳能电池n窗口层的纳米ZnS薄膜,并对其结构和结构进行了研究。检查了光学性质。根据获得的结果,系统地研究了ZnS的量子尺寸效应。与生长条件有关的控制因素是前体溶液的浓度,生长温度,水溶液的浓度。氨气和生长时间。 X射线衍射图谱表明,在本研究中获得的ZnS薄膜具有立方结构(β-ZnS)。随着生长温度的降低和前体溶液浓度的降低,发现膜的表面形态得到改善。特别是,这是首次报道了通过SGT生长的ZnS膜的表面形态对氨浓度的依赖性。由光透射率值确定样品的能带隙,并显示其在3.69至3.91eV之间变化。这些值显着高于块状ZnS的3.65 eV,表明SGT生长的ZnS的量子尺寸效应显着。 (C)2002由Elsevier Science B.V.出版[参考文献:23]

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