Comparison between different solar cells based on perovskite types

Mahassen H. Elblbeisi, M. Shabat
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引用次数: 1

Abstract

Perovskite solar cells (PSCs) are getting popular as promising photovoltaic technology due to their high efficiency and economical manufacturing costs. PSCs' effectiveness and stability have continuously improved in recent years, and research into minimizing lead leakage and creating environmentally acceptable lead-free perovskites is advancing the commercialization of PSCs step by step. The goal of this paper is to design a solar cell model based on getting higher light transmission and lower light reflection. Three-layer solar cell structure containing perovskite, titanium dioxide, and metal Nano layer sandwich between a silicon substrate and glass cover. The Maple 17 software is used to create the numerical results for the Transfer matrix, which determines the transmission and reflection of the incident light for various physical parameters of the structure. The results showed that the cell with aluminum cell has an excellent transmittance for a wide range of incident angles, perovskite thickness, and effective layer thickness. The short circuit current density reaches the most significant value at (𝛼 = 0), and it has zero value for parallel incidents. The cell of CH3NH3PbI3perovskite type and the aluminum metal nanolayer has the highest current density and a non-zero value for a wide range of incident angles.
基于钙钛矿类型的不同太阳能电池的比较
钙钛矿太阳能电池(PSCs)由于其高效率和经济的制造成本而成为一种很有前途的光伏技术。近年来,PSCs的有效性和稳定性不断提高,减少铅泄漏和创造环境可接受的无铅钙钛矿的研究正在逐步推进PSCs的商业化。本文的目标是设计一种基于高透光率和低反射光的太阳能电池模型。三层太阳能电池结构包含钙钛矿、二氧化钛和金属纳米层夹在硅衬底和玻璃盖板之间。使用Maple 17软件创建传输矩阵的数值结果,该矩阵决定了入射光在不同结构物理参数下的透射和反射。结果表明,铝电池在大入射角、钙钛矿厚度和有效层厚度范围内均具有优异的透光性。短路电流密度在(r = 0)处达到最显著值,并联时为零。ch3nh3pbi3钙钛矿型电池和铝金属纳米层具有最高的电流密度,并且在大入射角范围内具有非零值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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