2compact layer (CL) is prepared by Spray Pyrolysis Deposition (SP'/> Influence of the TiO2 Compact Electron Transport Layer on the Planar Perovskite Solar Cell Performance
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Influence of the TiO2 Compact Electron Transport Layer on the Planar Perovskite Solar Cell Performance

机译:TiO2紧凑型电子传输层对平面Perovskite太阳能电池性能的影响

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In this study, a high-quality TiO2compact layer (CL) is prepared by Spray Pyrolysis Deposition (SPD), which is employed as a potential ETL for the realization of PSCs. To optimize the ETL, the thickness of the TiO2-CL is varied from 20 nm to 200 nm with a step size of 20 nm, where the photovoltaic performance of each is systematically computed. The optics of the solar cell is investigated by 3D finite-difference time-domain simulations, where electrical parameters are analyzed through finite element method simulations. The optimized thickness of the TiO2-CL ETL exhibits a maximum energy conversion efficiency of 19.46%. Detailed guidelines for the optimization process and device design are provided.
机译:在这项研究中,一种高质量的TiO 2 通过喷雾热解沉积(SPD)制备紧凑层(CL),其用作实现PSC的电位EN。优化ETL,TIO的厚度 2 -Cl由20nm至200nm变化,具有20nm的台阶为20nm,其中系统的光伏性能被系统地计算。通过3D有限差分时间域模拟研究了太阳能电池的光学器件,其中通过有限元方法模拟分析了电参数。 TiO的优化厚度 2 -ClETL表现出最大能量转换效率为19.46%。提供了优化过程和设备设计的详细指南。

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