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首页> 外文期刊>Solar Energy >Investigations On Microstructural And Optical Properties Of Cds Films Fabricated By A Low-cost, Simplified Spray Technique Using Perfume Atomizer For Solar Cell Applications
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Investigations On Microstructural And Optical Properties Of Cds Films Fabricated By A Low-cost, Simplified Spray Technique Using Perfume Atomizer For Solar Cell Applications

机译:低成本简化喷雾技术使用香水雾化器制备的Cds薄膜的微结构和光学性质的研究,用于太阳能电池

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Good quality CdS films were fabricated by employing a simplified spray pyrolysis technique using perfume atomizer. CdS films have been deposited from aqueous solutions of sulphur and cadmium, keeping the molar concentrations of S:Cd = 0.01:0.01, 0.02:0.02, 0.04:0.04 and 0.06:0.06 in the starting solutions. The structural studies reveal that the S:Cd concentration has a strong influence on the microstructural characteristics of the sprayed CdS films. It was found that there is a transition in the preferred orientation from (002) plane to (1 0 1) plane when S:Cd molar concentration increases. The SEM images depict that the films are uniform and homogeneous. All the films have high optical transmittance (>80%) in the visible range. The optical band gap values are found to be in the range of 2.46-2.52 eV. CdS films fabricated by this simple and economic spray technique without using any carrier gas are found to be good in structural and optical properties which are desirable for photovoltaic applications. Hence, this simplified version of spray technique can be considered as an economic alternative to conventional spray pyrolysis (using carrier gas), for the mass production of low-cost, large area CdS coatings for solar cell applications.
机译:通过使用简化的喷雾热解技术和香料雾化器制备了高质量的CdS膜。 CdS膜已从硫和镉的水溶液中沉积,使起始溶液中S:Cd的摩尔浓度保持为0.01:0.01、0.02:0.02、0.04:0.04和0.06:0.06。结构研究表明,S:Cd浓度对喷涂的CdS薄膜的微观结构特征有很大的影响。发现当S:Cd摩尔浓度增加时,优选的取向从(002)面向(1 0 1)面存在过渡。 SEM图像描述了膜是均匀且均质的。所有薄膜在可见光范围内都有很高的透光率(> 80%)。发现光学带隙值在2.46-2.52eV的范围内。发现通过这种简单且经济的喷涂技术制造的,不使用任何载气的CdS膜具有良好的结构和光学性能,这是光伏应用所希望的。因此,这种喷雾技术的简化形式可以被认为是常规喷雾热解(使用载气)的经济替代方案,用于批量生产低成本,大面积CdS涂层的太阳能电池。

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