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Temperature Variation-Induced Performance Decline of Perovskite Solar Cells

机译:温度变化诱导钙钛矿太阳能电池的性能下降

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This paper reports on the impact of outdoor temperature variations on the performance of organo metal halide perovskite solar cells (PSCs). It shows that the open-circuit voltage (V-OC) of a PSC decreases linearly with increasing temperature. Interestingly, in contrast to these expected trends, the current density (J(SC)) of PSCs is found to decline strongly below 20% of the initial value upon cycling the temperatures from 10 to 60 degrees C and back. This decline in the current density is driven by an increasing series resistance and is caused by the fast temperature variations as it is not apparent for solar cells exposed to constant temperatures of the same range. The effect is fully reversible when the devices are kept illuminated at an open circuit for several hours. Given these observations, an explanation that ascribes the temperature variation-induced performance decline to ion accumulation at the contacts of the solar cell because of temperature variation-induced changes of the built-in field of the PSC is proposed. The effect might be a major obstacle for perovskite photovoltaics because the devices exposed to real outdoor temperature profiles over 4 h showed a performance decline of 15% when operated at a maximum power point.
机译:本文报告了室外温度变化对有机金属卤化物钙钛矿太阳能电池(PSC)的性能的影响。它表明,PSC的开路电压(V-OC)随温度的增加而线性降低。有趣的是,与这些预期趋势相反,PSC的电流密度(J(SC))被发现在将10至60摄氏度的温度循环到循环到初始值的初始值的强度低于20%。电流密度的这种下降由串联电阻的增加而驱动,并且由快速温度变化引起的,因为对于暴露于相同范围的恒定温度的太阳能电池并不明显。当在开路处保持在开路时,效果完全可逆。鉴于这些观察结果,提出了一种解释,其提出了由于温度变化诱导的PSC内置场的温度变化的变化而归因于太阳能电池的触点处的离子积聚的离子积聚的解释。该效果可能是Perovskite光伏的主要障碍,因为暴露于4小时的真实户外温度型材的装置显示出在最大功率点时的性能下降和GT; 15%。

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