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Organic photovoltaic cells - promising indoor light harvesters for self-sustainable electronics

机译:有机光伏电池 - 用于自我可持续电子产品的通用室内光收割机

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Photovoltaic cells are attracting significant interest for harvesting indoor light for low power consumption wireless electronics such as those required for smart homes and offices, and the rapidly-growing Internet of Things. Here, we explore the potential of solution processable, small molecule photovoltaic cells as indoor power sources. By optimizing the solvent vapour annealing (SVA) time for the photovoltaic layer, a balance between its crystallization and phase separation is obtained, resulting in a record power conversion efficiency (PCE) of over 28% under fluorescent lamps of 1000 lux, generating a maximum power density of 78.2 mu mW cm(-2) ( 10% PCE under AM1.5G). This high indoor performance surpasses that of silicon based photovoltaic cells, and is similar to that of gallium arsenide photovoltaic cells. Besides, the ratios of the voltage at the maximum power point (MPP) to the open circuit voltage are similar from indoor lighting to one sun conditions, which is unique and allows a less power consuming method to track the MPP for a broad range of light intensities (potentially attractive for wearable photovoltaics). New insight into the effect of SVA on the indoor and one sun performance is provided using advanced optoelectronic characterization techniques, which show that the mobility-lifetime products as a function of charge carrier density can be correlated well with the performance at different light levels. Our results suggest that organic photovoltaic cells could be promising as indoor power sources for self-sustainable electronics.
机译:光伏电池是吸引了收获的室内光线下低功耗的无线电子设备如智能家庭和办公室要求,以及物联网的迅速增长的互联网显著的兴趣。在这里,我们探索可溶液加工的,小分子的光伏电池室内电源的电势。通过优化溶剂蒸气退火(SVA)时间为光伏层,获得其结晶和相分离之间的平衡,导致超过28%下1000勒克斯的荧光灯的记录功率转换效率(PCE),产生一最大(10%AM1.5G下PCE&GT)的78.2亩毫瓦厘米(-2)的功率密度。这种高室内性能超过硅的基于光伏电池,并且是类似于砷化镓光伏电池。此外,在最大功率点(MPP),以开路电压的电压的比是从室内照明到一个太阳的条件,这是独特的,并允许更少的功率消耗的方法来跟踪所述MPP对于宽范围的光的类似强度(潜在地可用于可穿戴光伏吸引力)。新洞察SVA对室内和一个太阳性能的影响是使用先进的光电表征技术,这表明,该迁移率寿命产品作为电荷载流子密度的函数可以与在不同的光水平的性能很好的相关性提供。我们的研究结果表明,有机光伏电池可看好室内电源的自我维持的电子产品。

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