Potential of Hawleyite Cadmium Sulphide (CdS) Nanofilms for PV Cell Applications

E. A. Ubieko, J. A. Amusan, E. Osarolube, C. Okujagu
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Abstract

The search for suitable materials as buffer layer in the development of photovoltaic cell necessitates the study. The objective is thus, to synthesize and characterize CdS nanofilm for photovoltaic cell application. Thin films of Cadmium Sulphide were deposited on degreased glass substrate, from a bath containing the precursors via Chemical Bath Deposition (CBD) technique. The Physical, Structural, and optical properties were investigated by X-Ray diffractometer, Scanning Electron microscopy (SEM), surface profilometer, Energy dispersive X-ray spectroscopy (EDX) and spectrophotometer. The 9 hours CdS sample showed peak intensities at 30.95o and 51.77o with hkl values of (1 1 1) and (2 2 0). The 12 hours sample showed peak intensities at 30.95o and 51.55o with hkl values of (1 1 1) and (2 2 0). The planes of cubic phase correspond to the mineral Hawleyites for both samples. The average Crystallite grain size for the 9 hours sample is 27.72nm and 38.99nm for the 12 hours samples. The Scanning Electron microscopy analyses illustrate the morphology and the level of uniformity of the CdS coating across the surface of the        9 hours sample and 12 hours samples. The micrographs although slightly similar, the 12 hours sample appeared to be more uniformly coated when compared to the 9 hours sample. Electron-Dispersive X-ray Spectroscopy (EDX) indicated the percentage composition of Cadmium and Sulphide present in the both 9 hours and 12 hours samples, with Cadmium having an average composition of 26.45% and sulphide 8.65% for the 9 hours sample, and 61.95% for Cadmium and 16.43% for Sulphide in the 12 hours CdS sample. The Spectrophotometer was used to investigate the behavior of both samples in the UV (≤ 400nm), Visible and part of the Infrared region. The bandgap energies of both 9 hours and 12 hours sample were 2.36eV and 2.257eV respectively. The average value for the optical conductivity for 9hours sample is 5.099 x 1013 and 7.75 x 1013 for 12 hours sample. The average values of the extinction coefficients, k  for 9 hours sample is 1.07 x 109 and 2.02 x 109 for 12 hours sample. The average thickness value of CdS Sample deposited for 9 hours is 14.10 x10-9m while that of the CdS sample deposited for 12 hours is 14.5 x 10-9m. The results affirm the choice of CdS film as buffer layer of the photovoltaic cells.
硫化镉纳米膜在光伏电池中的应用潜力
在光伏电池的发展中寻找合适的缓冲层材料是研究的必要条件。因此,目的是合成和表征用于光伏电池的CdS纳米膜。采用化学浴沉积(CBD)技术,在含前驱体的镀液中沉积硫化镉薄膜。采用x射线衍射仪、扫描电镜(SEM)、表面轮廓仪、能量色散x射线能谱仪(EDX)和分光光度计对其物理、结构和光学性质进行了研究。9 h cd样品的峰值强度分别为30.95°和51.77°,hkl值分别为(1 1 1)和(2 2 0),12 h样品的峰值强度分别为30.95°和51.55°,hkl值分别为(1 1 1)和(2 2 0),两种样品的立方相平面均对应于Hawleyites矿物。9小时样品的平均晶粒尺寸为27.72nm, 12小时样品的平均晶粒尺寸为38.99nm。扫描电子显微镜分析说明了cd涂层在9小时和12小时样品表面的形貌和均匀度。显微照片虽然略有相似,但12小时的样品与9小时的样品相比,涂层似乎更均匀。电子色散x射线光谱(EDX)显示了9小时和12小时样品中镉和硫化物的百分比组成,9小时样品中镉的平均组成为26.45%,硫化物的平均组成为8.65%,12小时样品中镉的平均组成为61.95%,硫化物的平均组成为16.43%。用分光光度计研究了两种样品在紫外(≤400nm)、可见光和部分红外区的行为。9 h和12 h样品的带隙能分别为2.36eV和2.257eV。9小时样品的光导率平均值为5.099 × 1013, 12小时样品的光导率平均值为7.75 × 1013。9小时的消光系数k平均值为1.07 × 109, 12小时的消光系数k平均值为2.02 × 109。沉积9小时的cd样品平均厚度值为14.10 × 10-9m,沉积12小时的cd样品平均厚度值为14.5 × 10-9m。结果肯定了CdS薄膜作为光伏电池缓冲层的选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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