论文标题

Operando直接观察自旋状态与钙钛矿太阳能电池中装置性能相关的自旋状态

Operando direct observation of spin states correlated with device performance in perovskite solar cells

论文作者

Watanabe, Takahiro, Yamanari, Toshihiro, Marumoto, Kazuhiro

论文摘要

钙钛矿太阳能电池是最吸引人的电池之一,因为最近的功率转化效率明显提高(PCE)。对于他们的实际应用,重要的不仅要增加PCE,而且要阐明恶化机制。在这里,我们使用电子自旋共振(ESR)光谱介绍了Operando直接观察细胞中的自旋状态,以便从微观观点研究该操作和恶化机制。通过同时测量同一细胞的太阳能电池和ESR特性,证明孔传输材料(HTM)螺旋体中的自旋状态在分子水平上发生了变化,这在设备操作下的设备性能变化了。这些变化归因于通过电荷载体散射和HTM中深度捕获水平填充孔传输的变化,以及在HTM接口处形成的界面电偶极层。此外,在紫外线光照射下,在分子水平上直接证明了从TIO2层到HTM层的反向电子转移,这会导致HTM掺杂效应的降低。因此,对细胞内部状态进行此类操作显微镜研究将很有用,可以获得改善设备性能和耐用性的新指南。

Perovskite solar cells are one of the most attracting cells because of remarkably improved power conversion efficiency (PCE) recently. Toward their practical application, it is important not only to increase the PCE but also to elucidate the deterioration mechanism. Here, we present operando direct observation of spin states in the cells using electron spin resonance (ESR) spectroscopy in order to investigate the operation and deterioration mechanisms from a microscopic viewpoint. By simultaneous measurements of solar-cell and ESR characteristics of the same cell, the spin states in the hole-transport material (HTM) spiro-OMeTAD are demonstrated to be changed at the molecular level, which varies the device performance under device operation. These variations are ascribed to the change of hole transport by charge-carrier scatterings and filling of deep trapping levels in the HTM, and to interfacial electric dipole layers formed at the HTM interfaces. In addition, reverse electron transfer from TiO2 layer to the HTM layer is directly demonstrated at the molecular level under ultraviolet light irradiation, which causes the decrease in the HTM doping effect. Thus, conducting such operando microscopic investigation on the internal states in the cells would be useful to obtain a new further guideline for improving the device performance and durability.

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