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Interfacial recombination kinetics in aged perovskite solar cells measured using transient photovoltage techniques

机译:岁的界面复合动力学钙钛矿使用瞬态测量太阳能电池光电压技术

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摘要

The reduction of interfacial charge recombination kinetics in perovskite solar cells is key to increase device photovoltaic efficiencies. Thus, it is necessary to fully understand which are the major carrier losses and, thereafter, how they can be minimized. Transient Photovoltage (TPV) has been widely used to study carrier recombination in solar cells under operando conditions. Interestingly, a novel negative transient deflection appears in perovskite solar cells when carrying out TPV measurements and it has been related to the ionic accumulation at the perovskite interfaces, which is a process that requires great attention to fully understand how perovskite solar cells work. Herein, we moved one step further and continuously monitored the evolution of the negative trace with the aging of the perovskite solar cell. Importantly, we demonstrated that the negative signal changes with aging of the solar cells and such a change can be directly related to the enhancement of the open circuit voltage and fill factor of the devices and thus the solar cell efficiency. We postulate that this increase in efficiency is due to better/faster ion redistribution within the perovskite material.
机译:减少界面电荷复合在钙钛矿动力学太阳能电池是关键增加设备光电效率。有必要完全理解的主要航空公司亏损,此后,他们如何可以最小化。已被广泛用于研究航母吗operando下复合太阳能电池条件。瞬态偏差出现在钙钛矿太阳能冠捷测量和细胞携带一直在与离子积累钙钛矿的接口,这是一个过程需要高度重视充分了解钙钛矿的太阳能电池工作。进一步,不断监控进化的负面的老化痕迹钙钛矿的太阳能电池。证明了消极的信号变化太阳能电池的老化和这样一个变化可以直接相关的增强开路电压和填充因子设备和太阳能电池的效率。假定这是由于增加效率更快更好/离子内重新分配perovskite材料。

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