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Anomalous photovoltaic effect in organic-inorganic hybrid perovskite solar cells

机译:有机-无机杂化钙钛矿太阳能电池中的异常光伏效应

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Organic-inorganic hybrid perovskites (OIHPs) have been demonstrated to be highly successful photovoltaic materials yielding very-high-efficiency solar cells. We report the room temperature observation of an anomalous photovoltaic (APV) effect in lateral structure OIHP devices manifested by the device’s open-circuit voltage (VOC) that is much larger than the bandgap of OIHPs. The persistent VOC is proportional to the electrode spacing, resembling that of ferroelectric photovoltaic devices. However, the APV effect in OIHP devices is not caused by ferroelectricity. The APV effect can be explained by the formation of tunneling junctions randomly dispersed in the polycrystalline films, which allows the accumulation of photovoltage at a macroscopic level. The formation of internal tunneling junctions as a result of ion migration is visualized with Kelvin probe force microscopy scanning. This observation points out a new avenue for the formation of large and continuously tunable VOC without being limited by the materials’ bandgap.
机译:有机-无机杂化钙钛矿(OIHP)已被证明是非常成功的光伏材料,可产生非常高效的太阳能电池。我们报告了在室温下观察到的横向结构OIHP设备中异常光伏(APV)效应的现象,该现象表现为该设备的开路电压(V OC )远大于OIHP的带隙。持久性V OC 与电极间距成正比,类似于铁电光伏器件的间距。但是,OIHP设备中的APV效应不是由铁电引起的。 APV效应可以通过在多晶膜中随机分布的隧道结的形成来解释,这可以使光电压在宏观水平上积累。通过开尔文探针力显微镜扫描可以看到由于离子迁移而形成的内部隧道结。该观察结果指出了形成大且可连续调谐的V OC 的新途径,而不受材料的带隙限制。

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