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首页> 外文期刊>International Journal of Optoelectronic Engineering >Physical Properties of ZnxCd1-xS Nanocrytalline Layers Synthesized by Solution Growth Method
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Physical Properties of ZnxCd1-xS Nanocrytalline Layers Synthesized by Solution Growth Method

机译:溶液生长法合成Zn x Cd 1-x S纳米晶层的物理性质

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摘要

In recent years, zinc cadmium sulphide (ZnxCd1-xS) alloy compounds have paid much attention in the fields of opto-electronics, particularly in photovoltaic devices because of its tunable energy gap and the lattice parameters. The energy band gap of ZnxCd1-xS is controlled by the change of Zn-composition in order to suit the material properties with that of absorber material in solar cells. In this paper, we report on the effect of Zn-composition on physical properties of ZnxCd1-xS thin films deposited on corning glass substrates by solution growth method. The layers were prepared for different ‘x’ values that vary in the range, 0 – 1.0 at. %. The as-grown layers were characterized using EDAX, XRD, SEM, and UV-Vis-NIR spectrophotometers. All the layers showed a strong (002) plane as the preferred orientation that exhibited the hexagonal crystal structure. The composition of the layers agrees approximately with that of the elements in the solution. The films showed an average optical transmittance of 72 % at a zinc composition of 0.75 with a band gap of 3.88 eV.
机译:近年来,硫化锌镉(ZnxCd1-xS)合金化合物因其可调的能隙和晶格参数而在光电领域特别是光伏器件领域引起了广泛关注。 ZnxCd1-xS的能带隙是通过Zn组成的变化来控制的,以使其与太阳能电池中吸收体材料的材料性能相适应。在本文中,我们通过溶液生长方法报道了锌成分对沉积在康宁玻璃基板上的ZnxCd1-xS薄膜物理性能的影响。图层针对0到1.0 at范围内的不同“ x”值进行了准备。 %。使用EDAX,XRD,SEM和UV-Vis-NIR分光光度计对生长的层进行表征。所有层均显示出强(002)平面,这是显示六方晶体结构的首选方向。层的组成大致与溶液中元素的组成一致。薄膜在锌组成为0.75且带隙为3.88 eV时显示出72%的平均透光率。

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