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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Enhancement of the photocurrent and efficiency of CdTe solar cells suppressing the front contact reflection using a highly-resistive ZnO buffer layer
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Enhancement of the photocurrent and efficiency of CdTe solar cells suppressing the front contact reflection using a highly-resistive ZnO buffer layer

机译:使用高电阻ZnO缓冲层抑制了CDTE太阳能电池的光电流和效率的增强

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摘要

We report on the effects of using an atomic layer deposited ZnO transparent buffer layer with 10(6) Omega cm resistivity on the performance of CdZnS/CdTe solar cells grown by metalorganic chemical vapour deposition (MOCVD). The buffer film thickness is adjusted by optical modelling to suppress the reflection losses at the front contact. A clear improvement, up to 1.8% in conversion efficiency, was obtained in comparison to reference devices without the ZnO buffer layer, thanks to the enhancement of the current density (J(sc)) and fill factor (FF). Device spectral response showed improved collection for most of the visible region. Reflectance measurements confirmed that the ZnO film reduced the optical reflectance around the transparent front contact. This effect permitted light management through the front contact leading to an improvement of the J(sc) and hence the photovoltaic conversion efficiency. These results are intriguing since the literature on CdTe solar cells did not previously report improvement to the photocurrent and device response through controlling the highly-resistive transparent buffer layer.
机译:我们报告使用原子层沉积的ZnO透明缓冲层与&gt的影响。 10(6)ωCM电阻率对由金属有机化学气相沉积(MOCVD)生长的CDZNS / CDTE太阳能电池的性能。通过光学建模调节缓冲膜厚度以抑制前触点处的反射损耗。与电流密度(J(SC))和填充因子(FF)的增强相比,与没有ZnO缓冲层的参考装置的参考装置获得明显的改善,转换效率高达1.8%。设备光谱响应显示大多数可见区域的改进收集。反射率测量证实,ZnO膜在透明前触点周围降低了光学反射。这种效果允许光线管理通过前触点导致j(sc)的改进,从而改善光伏转换效率。由于CDTE太阳能电池的文献以前没有通过控制高电阻透明缓冲层来提高光电流和装置响应的文献,因此这些结果是有趣的。

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