Influence of the TiO2 Compact Electron Transport Layer on the Planar Perovskite Solar Cell Performance

M. I. Hossain, Safayet Ahmed, M. Shahiduzzaman, Wayesh Qarony, A. M. Saleque, Jahid Anowar, D. Knipp, Y. Tsang
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Abstract

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.
TiO2致密电子传输层对平面钙钛矿太阳能电池性能的影响
本研究采用喷雾热解沉积(SPD)法制备了高质量的tio2致密层(CL),并将其作为实现psc的潜在ETL。为了优化ETL, TiO2-CL的厚度从20 nm变化到200 nm,步长为20 nm,其中系统地计算了每种TiO2-CL的光伏性能。采用三维时域有限差分模拟方法研究了太阳能电池的光学特性,并通过有限元模拟方法分析了电池的电学参数。优化后的TiO2-CL ETL厚度的能量转换效率最高为19.46%。为优化工艺和装置设计提供了详细的指导方针。
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