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Structural, Optical and Electrical Properties of Spray Pyrolysis Deposited CdS Films

机译:喷雾热解沉积CDS膜的结构,光学和电性能

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The n-type cadmium sulfide (CdS) is one of the most promising materials for hetero-junction thin film solar cell applications due to its wide bandgap (2.42 eV). In present communication, the deposition of pure CdS films with hexagonal symmetry by using home-built spray pyrolysis technique and aqueous solutions of CdCl2 and NH2.CS.NH2 as the precursor materials is reported. The films were deposited at the substrate temperatures of 200, 250 and 300 C with UHP nitrogen as a carrier gas and characterized by using X-ray diffraction (XRD), UVvisible spectroscopy and Hall Effect measurement. The structural studies by using XRD showed that the resultant films have strong orientation of CdS crystallites along (101) with hexagonal structure (wurtzite type). The average crystallite size is found to be 17 nm. The UV-visible spectroscopy studies of resultant films showed the optical transmittance equal to 50% and bandgap is found to be between 2.39 - 2.41 eV. The resistivity and average Hall coefficient are found to be 1.451101 cm and -1.557103 cm3/C respectively. The resultant films are observed to be good to make a solar cell with CdS as a window layer.
机译:N型硫化镉(CDS)是由于其宽带隙(2.42eV)引起的杂连接薄膜太阳能电池应用中最有前途的材料之一。在目前的通信中,通过使用家用的喷雾热解技术和CDCl2和NH2.CS.NH2的水溶液作为前体材料的纯CDS膜的沉积与六边形对称。将薄膜用UHP氮作为载气沉积在200,250和300℃的基板温度下,并用X射线衍射(XRD),UVisible光谱和霍尔效应测量的特征。使用XRD的结构研究表明,所得薄膜具有沿六边形结构(紫立岩型)沿(101)的CDS微晶的强取向。发现平均微晶尺寸为17nm。所得薄膜的UV可见光光谱研究表明,光学透射率等于50%,发现带隙在2.39-2.41eV之间。电阻率和平均霍尔系数分别为1.451101cm和-1.557103cm3 / c。观察到所得薄膜是良好的,使具有CD的太阳能电池作为窗口层。

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