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ZnS/CdSe_(0.2)S_(0.8)/ZnSSe heterostructure as a novel and efficient photosensitizer for highly efficient quantum dot sensitized solar cells

机译:ZnS / CDSE_(0.2)S_(0.8)/ ZNSSE异质结构作为一种新颖的高效光敏剂,用于高效量子点敏化太阳能电池

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Herein, we systematically studied the influence of ZnS, ZnSe and ZnSxSe1-x, with S:Se molar ratio of 1:4, layers as both inner and outer layers on photovoltaic properties of QDSSCs based on CdSexS1-x QDs when the molar ratio of S:Se is 4:1. The results show that ZnS and ZnS0.2Se0.8 layers are the best choice for the CdSe0.2S0.8-based QDSSCs as an inner and outer layer, respectively. Hence, we successfully designed and fabrication of QDSSCs based on ZnS/CdSe0.2S0.8/ZnS0.2Se0.8 photosensitizer with a high efficiency of 6.31%, which is almost more than double the efficiency of 3% for bare CdSe0.2S0.8-based QDSSCs. Our results indicated that in this heterostructure structure the ZnS layer acts as both a seed layer and a blocking layer, which leads to an increase in the light harvesting efficiency and a decrease in the interfacial charge recombination. On the other hand, the ZnS0.2Se0.8 layer acts as an effective passivation layer which not only reduces the charge recombination process, but also improves the light absorption range. Therefore, when both of these layers were employed in the CdSe0.2S0.8 QDSSCs, the electron lifetime and thereby the accumulation of photo-injected electrons in the TiO2 film greatly improved and reached to 104 ms and 1.21E + 18 cm(3), respectively.
机译:在此,我们系统地研究了ZnS,ZnSe和ZnSXSe1-X的影响,S:Se摩尔比为1:4,层作为内层和外层,基于CdsexS1-x QDS的QDSSCS的光伏性能下S:SE是4:1。结果表明,ZnS和ZnS0.2Se0.8层是CDSE0.2S0.8的基于CDSE0.2S0.8的QDSSCS作为内层和外层的最佳选择。因此,我们成功设计和制造了基于ZnS / CDSe0.2S0.8 / ZnS0.2S0.8光敏剂的QDSSCS,其高效率为6.31%,对于裸CDSE0.2S0的效率为3%的效率几乎超过加倍。基于8的QDSSC。我们的结果表明,在该异质结构结构中,ZnS层用作种子层和阻挡层,这导致光收集效率的增加和界面电荷重组的降低。另一方面,ZnS0.2Se0.8层用作有效的钝化层,其不仅降低了电荷重组过程,而且还改善了光吸收范围。因此,当在CDSE0.2S0.8 QDSSCS中使用这两层时,电子寿命并从而在TiO 2膜中积聚光注入的电子大大改善和达到104ms和1.21e + 18cm(3) , 分别。

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