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INFLUENCE OF METAL ELECTRODES ON THE CHARGE EXTRACTION OF INVERTED PEROVSKITE SOLAR CELLS

机译:金属电极对钙钛矿转化太阳能电池电荷提取的影响

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A perovskite solar cell in the inverted configuration was modeled and simulated to investigate the impact of the cathode work function on the cell performance. The model utilized the drift-diffusion current equations, coupled with Poisson"s equation and continuity equations to determine the J-V characteristics, the band diagram, and the external quantum efficiencies. It was found the power conversion efficiency (PCE) tended to decrease with the increasing work functions of the metal cathode. The device using low work function metal Ca delivered the best PCE of 16.7%, whereas the one with high work function Au possessed the lowest PCE of 0.3%. These results were in a close agreement with experiments in literature. Photovoltaic parameters (FF, J_(sc), and V_(oc)) showed the same tendency and were responsible for the PCE. The band diagram revealed the formation of Schottky barrier was the main reason for the reduction in V_(oc), and the external quantum efficiency spectrum showed the adverse effect of the Schottky barrier on the charge extraction.
机译:对处于倒置状态的钙钛矿太阳能电池进行了建模和仿真,以研究阴极功函数对电池性能的影响。该模型利用漂移扩散电流方程,结合泊松方程和连续性方程来确定合资特性,能带图和外部量子效率,发现功率转换效率(PCE)随功率的增加而降低。使用低功函数金属Ca的器件提供了16.7%的最佳PCE,而使用高功函数Au的器件具有0.3%的最低PCE,这些结果与实验相吻合。光伏参数(FF,J_(sc)和V_(oc))表现出相同的趋势并与PCE有关,能带图显示肖特基势垒的形成是V_(oc)降低的主要原因。 ,外部量子效率谱显示了肖特基势垒对电荷提取的不利影响。

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