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A Multi-Electron Transporting Layer for Efficient Perovskite Solar Cells

机译:用于高效钙钛矿太阳能电池的多电子传输层

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In this work, a multi-electron transporting layer (ETL) for efficient perovskite solar cells is investigated. The multi-ETL consists of five conditions including SnO2, SnO2/SnOx, TiO2, TiO2/SnO2, and TiO2/SnO2/SnOx. The best performance of PSC devices is found in the SnO2/SnOx double-layer and exhibits a power conversion efficiency equal to 18.39% higher than the device with a TiO2 single-layer of 14.57%. This enhancement in efficiency can be attributed to a decrease in charge transport resistance (Rct) and an increase in charge recombination resistance (Rrec). In addition, Rct and Rrec can be used to explain the comparable power conversion efficiency (PCE) between a PSC with a SnO2/SnOx double-layer and a PSC with a triple-layer, which is due to the compensation effect of Rct and Rrec parameters. Therefore, Rct and Rrec are good parameters to explain the efficiency enhancement in PSC. Thus, the Rct and Rrec from the electrochemical impedance spectroscopy (EIS) technique is an easy and alternative way to obtain information to understand and characterize the multi-ETL on PSC.
机译:在这项工作中,研究了用于高效钙钛矿太阳能电池的多电子传输层(ETL)。多EtL包括五种条件,包括SnO2,SnO2 / Snox,TiO2,TiO2 / SnO2和TiO2 / SnO2 / Snox。 PSC器件的最佳性能在SnO2 / SNOX双层中找到,并且表现出比具有14.57%的TiO2单层的装置高的功率转换效率等于18.39%。这种提高效率可归因于电荷传输电阻(RCT)的降低和电荷重组阻力(RREC)的增加。此外,RCT和RREC可用于在PSC与SNO2 / SNOX双层和具有三层的PSC之间的相当功率转换效率(PCE),这是由于RCT和RREC的补偿效果参数。因此,RCT和RREC是解释PSC中效率增强的好参数。因此,来自电化学阻抗光谱(EIS技术的RCT和RREC是一种简单又一替代的方法,以获得信息以了解和表征PSC上的多ETL。

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