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MoS2: a two-dimensional hole-transporting material for high-efficiency, low-cost perovskite solar cells

机译:MOS2:用于高效率,低成本的钙钛矿太阳能电池的二维空穴传输材料

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摘要

In this work MoS2 thin film was studied as a potential two-dimensional (2D) hole-transporting material for fabrication of low-cost, durable and efficient perovskite solar cells. The thickness of MoS2 was studied as a potential factor in reaching high power conversion efficiency in perovskite solar cells. The thickness of the perovskite layer and the different metal back contacts gave distinct photovoltaic properties to the designed cells. The results show that a single sheet of MoS2 could considerably improve the power conversion efficacy of the device from 10.41% for a hole transport material (HTM)-free device to 20.43% for a device prepared with a 0.67 nm thick MoS2 layer as a HTM. On the back, Ag and Al collected the carriers more efficiently than Au due to the value of their metal contact work function with the TiO2 conduction band. The present work proposes a new architecture for the fabrication of low-cost, durable and efficient perovskite solar cells made from a low-cost and robust inorganic HTM and electron transport material.
机译:在该工作中,研究MOS2薄膜作为潜在的二维(2D)空穴传输材料,用于制造低成本,耐用和有效的Perovskite太阳能电池。研究了MOS2的厚度作为肝脏太阳能电池达到高功率转换效率的潜在因子。钙钛矿层的厚度和不同的金属背触点向设计的电池提供了不同的光伏性能。结果表明,单张MOS2可以显着提高装置的电力转换效果从孔输送材料(HTM)的10.41%,为用0.67nm厚的MOS2层制备的装置为HTM的装置为20.43% 。在后面,AG和A1由于与TiO2导带的金属接触工作功能的价值,载体比Au更有效地收集载体。本工作提出了一种用于制造由低成本和鲁棒无机HTM和电子传输材料制成的低成本,耐用和高效的钙钛矿太阳能电池的新架构。

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