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Perovskite-organic hybrid tandem solar cells using a nanostructured perovskite layer as the light window and a PFN/doped-MoO3/MoO3 multilayer as the interconnecting layer

机译:Perovskite-organic混合串联太阳能电池使用一层纳米钙钛矿如光窗口和PFN / doped-MoO3 / MoO3多层连接层

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摘要

In this study, we present a two-terminal perovskite (PVSK)-organic hybrid tandem solar cell with a nano-structured PVSK as the light window and a PFN/doped MoO3/MoO3 structure as the interconnecting layer (ICL). In this tandem structure, the PVSK layer is specially designed with a nanostructured surface morphology; thus the PCBM could be filled-up for forming intimately contacted interface with PVSK layers. This design could not only efficiently increase the device performance, it could also greatly remove the hysteresis of PVSK solar cells. The study indicates that doped MoO3 as the step layer plays a key role in protecting the underlying layer against multi-solution processes and aids in the efficient recombination of electrons and holes generated from the sub-cells. The hybrid tandem solar cell could achieve a high V-OC of 1.58 V, which is the sum of those in the two sub-cells, and a high FF of 0.68, indicating the effectiveness of the multilayer ICL.
机译:在这项研究中,提出了一种双端钙钛矿(PVSK)有机混合串联太阳能细胞和纳米结构PVSK如光窗口和PFN /掺杂MoO3 / MoO3结构的互连层(ICL)。结构、PVSK层是专门设计的纳米表面形态;形成的PCBM可以填满密切联系PVSK层的界面。这种设计不仅可以有效地增加设备性能,它也可能很大删除PVSK太阳能电池的滞后。研究表明,掺杂MoO3层的步骤在保护底层中扮演一个关键的角色层对反演过程和艾滋病在高效的电子和重组黑洞产生的子。串联太阳能电池可以实现高V-OC的1.58 V,这是这两个的总和子,高FF的0.68,表明多层ICL的有效性。

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