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Effect of the reactant concentration, bath temperature and deposition time on the properties of CdS thin film prepared by the chemical bath deposition method

机译:反应物浓度,浴温和沉积时间对化学浴沉积法制备Cds薄膜性能的影响

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CdS thin films for window layers in CdTe solar cells were deposited by the chemical bath deposition method without stirring. The influences of the deposition parameters were studied, such as the reactant concentration, deposition temperature and time on the film properties and solar cell performances, in order to apply in the fabricating of large-area solar cells. Here, we have considered the optical, morphological and structural properties of CdS films with the variation of deposition parameters by using UV-Vis spectroscopy, scanning electron microscopy and X-ray diffraction. Optical measurements revealed that maximum transmittance was obtained for S/Cd ratio of 6. It was found that film grown at 85 degrees C had better transmittance and showed more compact and smooth surface by means of UV-Vis and SEM measurements. We have demonstrated the transition of cubic and hexagonal crystal phases by the variation of solution PH with NH4Cl concentration through the XRD analysis. The performance of solar cells were estimated by measuring I-V characteristics with different S/Cd ratio, the open circuit voltage and fill factor at different deposition temperature and time. We have determined the optimal parameters such as reactant concentration of CdCl2: 1 mM, (NH2)(2)CS: 6 mM, NH4Cl: 20 mM, NH3H2O: 1 M, PH: 10.5, bath temperature: 85 degrees C, deposition time: 1 h.
机译:CDS在CdTe太阳能电池中的窗层薄膜通过化学浴沉积法沉积而不搅拌。研究了沉积参数的影响,例如反应物浓度,沉积温度和膜性能和太阳能电池性能的时间,以适用于大面积太阳能电池的制造。在这里,我们已经考虑了CDS膜的光学,形态和结构性能通过使用UV-Vis光谱,扫描电子显微镜和X射线衍射来沉积参数的变化。光学测量显示,对于S / Cd比率,获得最大透射率为6.发现在85摄氏度下生长的薄膜具有更好的透射率,并且通过UV-Vis和SEM测量显示更紧凑和光滑的表面。我们已经证明了通过XRD分析通过溶液pH与NH 4 Cl浓度的溶液pH的变化来过渡立方和六边形晶相。通过测量具有不同S / CD比率的I-V特性,开路电压和不同沉积温度和时间下的填充因子来估计太阳能电池的性能。我们已经确定了最佳参数,例如CDCl2:1mm的反应物浓度,(NH 2)(2)Cs:6mm,NH 4 Cl:20mm,NH 3 H 2 O:1 M,pH:10.5,浴温:85℃,沉积时间:1小时

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