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Solution-Processed Efficient Nanocrystal Solar Cells Based on CdTe and CdS Nanocrystals

机译:基于CdTe和CdS纳米晶体的固溶处理高效纳米晶体太阳能电池

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Solution-processed CdTe nanocrystals solar cells have attracted much attention due to their low cost, low material consumption, and potential for roll-to-roll production. Among all kinds of semiconductor materials, CdS exhibits the lowest lattice mismatch with CdTe, which permits high junction quality and high device performance. In this study, high quality CdS nanocrystals were prepared by a non-injection technique with tetraethylthiuram disufide and 2,2′-dithiobisbenzothiazole as the stabilizers. Based on the CdTe and CdS nanocrystals, devices with the architecture of ITO/ZnO/CdS/CdTe/MoOx/Au were fabricated successfully by a solution process under ambient condition. The effects of annealing conditions, film thickness, and detailed device structure on the CdTe/CdS nanocrystal solar cells were investigated and discussed in detail. We demonstrate that high junction quality can be obtained by using CdS nanocrystal thin film compared to traditional CdS film via chemical bath deposition (CBD). The best device had short circuit current density (Jsc), open circuit voltage (Voc) and fill factor (FF) of 17.26 mA/cm2, 0.56 V, and 52.84%, respectively, resulting in a power conversion efficiency (PCE) of 5.14%, which is significantly higher than that reported using CBD CdS as the window layer. This work provides important suggestions for the further improvement of efficiency in CdTe nanocrystal solar cells.
机译:固溶处理的CdTe纳米晶体太阳能电池因其低成本,低材料消耗以及卷对卷生产的潜力而备受关注。在所有类型的半导体材料中,CdS表现出与CdTe最低的晶格失配,从而实现了高结质量和高器件性能。在这项研究中,高质量的CdS纳米晶体是通过非注射技术以二乙基秋兰姆二硫化物和2,2'-二硫代双苯并噻唑为稳定剂制备的。在CdTe和CdS纳米晶体的基础上,通过环境条件下的固溶工艺成功制备了具有ITO / ZnO / CdS / CdTe / MoOx / Au结构的器件。研究并讨论了退火条件,膜厚和详细的器件结构对CdTe / CdS纳米晶太阳能电池的影响。我们证明与传统的CdS膜相比,使用CdS纳米晶体薄膜可以通过化学浴沉积(CBD)获得高结质量。最好的器件的短路电流密度(Jsc),开路电压(Voc)和填充系数(FF)分别为17.26 mA / cm2、0.56 V和52.84%,因此功率转换效率(PCE)为5.14 %,明显高于使用CBD CdS作为窗口层的报告值。这项工作为进一步提高CdTe纳米晶体太阳能电池的效率提供了重要的建议。

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