首页> 外文期刊>Solar Energy >Specific Al mole ratio doping aided flake-like ZnO surface morphology nanostructures film for efficient window layer in CuInS_2 photovoltaic cells
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Specific Al mole ratio doping aided flake-like ZnO surface morphology nanostructures film for efficient window layer in CuInS_2 photovoltaic cells

机译:CuInS_2光伏电池中有效窗口层的特定Al摩尔比掺杂辅助片状ZnO表面形貌纳米结构薄膜

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摘要

ZnO thin film with flake-like surface morphology has been optimized by Al doping via the home-built chemical spray pyrolysis technique at substrate temperature 250 degrees C. Then, its performance as an anti-reflecting as well as highly transparent and conducting window layer in CuInS2 based solid-state solar cell is explored here. The solid-state properties of the pristine and Al-doped ZnO (AZO) thin films have been studied to determine its potential for use in photovoltaic applications. First, it substantiates that the Zn, O and Al atoms are mainly involved for the growth of hexagonal wurtzite crystal structure by EDAX, XPS and XRD studies. All the films exhibit good optical transmittance nearly similar to 90-95% in the visible energy region. Further, the 2 wt% AZO film shows low reflection loss in the same region. The decreased electron forbidden gap size is noticed in Al doped ZnO as compared to pure ZnO film. The good electrical parameters i.e., high conductivity (0.26 mho cm(-1)) and low resistivity (3.8 Q cm) are found in the 2 wt% AZO film. Wettability test confirms the 2 wt% AZO flake-like surface morphology exhibited hydrophobic nature. Eventually, the 2 wt% Al-doped ZnO flake-like morphology thin film utilized as a window layer in CuInS2 based solid-state solar cell which exhibits a pronounced photocurrent density result in 2.20% power conversion efficiency (PCE) is achieved. This efficiency is superior to all others and 53% higher than that of pristine ZnO window layer based photovoltaic cell.
机译:通过在室内温度250摄氏度下通过自制化学喷雾热解技术对Al进行掺杂,对具有片状表面形态的ZnO薄膜进行了优化。然后,该薄膜的抗反射性能以及高透明和导电的窗口层本文探讨了基于CuInS2的固态太阳能电池。已经研究了原始的和铝掺杂的ZnO(AZO)薄膜的固态特性,以确定其在光伏应用中的潜力。首先,通过EDAX,XPS和XRD研究证实了Zn,O和Al原子主要参与六方纤锌矿晶体结构的生长。所有薄膜均显示出良好的光学透射率,在可见光能量范围内几乎接近90-95%。此外,2wt%的AZO膜在相同区域中显示出低反射损耗。与纯ZnO薄膜相比,在Al掺杂的ZnO中注意到电子禁带宽度的减小。在2 wt%的AZO膜中发现了良好的电参数,即高电导率(0.26 mho cm(-1))和低电阻率(3.8 Q cm)。润湿性测试证实2重量%的AZO薄片状表面形态表现出疏水性。最终,获得了在CuInS2基固态太阳能电池中用作窗口层的2wt%的Al掺杂的ZnO薄片状形态薄膜,其显示出显着的光电流密度,从而导致2.20%的功率转换效率(PCE)。该效率优于所有其他效率,比基于原始ZnO窗口层的光伏电池的效率高53%。

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