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Au/Cu2Te/CdTe/CdS/TCO/Glass Solar Cells withCdIn2O4Obtained by Sol-Gel as TCO

机译:Sol-Gel获得的CdIn2O4的Au / Cu2Te / CdTe / CdS / TCO /玻璃太阳能电池

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An Au/Cu2Te/CdTe/CdS/TCO/glass heterostructure based superstrate solar cells with 2.5 mm2of area, where the CdTe layer was prepared by means of closed spaced sublimation (CSS) and the CdS by chemical bath, reached an efficiencyηvalue of 12.1%. As transparent conductive oxide (TCO), a thin film of cadmium-indium oxide (CdIn2O4:CIO), obtained by sol-gel technique, was used. A systematic optimization of the thermal activation of the CdTe/CdS/CIO central part of the device with a CdCl2vapor ambient made the conversion efficiency of the Au/Cu2Te/CdTe/CdS/CIO/glass heterostructure reaches 9.94% for the CdTe layer with thickness of 1.8 μm. This efficiency was reached only through an open circuit voltageVOCoptimization. A maximumηof 12.1% was reached with the established procedure of optimization and when the CdTe layer thickness was increased to 3.1 ± 0.05 μm. The substitution of CIO by commercial ITO provoked in the cell a decrease ofηfrom 12.1% to 7.2%, both devices prepared under the same conditions. Starting from these results, we can say that CIO was a better TCO than commercial ITO in our solar cell, with the advantage that CIO was obtained by sol-gel, which is a simple and economical technique.
机译:以Au / Cu2Te / CdTe / CdS / TCO / TCO /玻璃异质结为基础的上层太阳能电池,其密闭升华(CSS)制备CdTe层,化学浴制备CdS,其效率η值为12.1% 。作为透明导电氧化物(TCO),使用通过溶胶-凝胶技术获得的氧化镉铟铟(CdIn 2 O 4:CIO)的薄膜。利用CdCl2蒸气环境对器件CdTe / CdS / CIO中央部分的热活化进行系统优化,使得厚度为CdTe层的Au / Cu2Te / CdTe / CdS / CIO /玻璃异质结构的转换效率达到9.94%为1.8μm。仅通过开路电压VOC优化来达到该效率。通过既定的优化程序和当CdTe层厚度增加到3.1±0.05μm时,最大η达到12.1%。在相同条件下制备的两种器件中,用商业ITO替代CIO可使电池中的η从12.1%降低至7.2%。从这些结果出发,我们可以说CIO在我们的太阳能电池中比商用ITO更好的TCO,其优势在于CIO是通过溶胶-凝胶获得的,这是一种简单而经济的技术。

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