Studying the effect of changing the thickness of the layers of the perovskite solar cell (ZnTe /CH3NH3PbI3 /TiO2/ZnO/FTO) using the simulation program (SCAPS 1-D)

Raddad Mahmoud, R. Rasool
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Abstract

This research includes a study of the effect of the thickness of each layer of perovskite solar cell (CH 3 NH 3 PbI 3 ) /TiO 2 /ZnO/FTO) and selecting the best thickness to obtain the highest efficiency of the cell, and studying the effect of adding a back surfsce layer on the efficiency of the solar cell using (SCAPS1-D). The perovskite (CH 3 NH 3 PbI 3 ) was adopted as absorption layer and its thickness tested from (1-7µm) with an increase of (1µm) to obtain the best thickness for best efficiency of the solar cell, its best thickness was (5µm), the thickness of the buffer layer (TiO 2 ) was tested from (0.5-1.5 µm) with an increase of (0.25µm) and its best thickness was (0.5 µm), the thickness of the transparent conduction oxide (FTO) layer was tested (0.1-1.1µm) with an increase of (0.2µm) and its best thickness was (0.1 µm) and the thickness of the window layer(ZnO) was tested (0.1-0.5 µm) with an increase of (0.1µm) and its best thickness was (0.1µm).The effect of the window layer on the thickness of the buffer layer was studied and it was found that the best thickness of the buffer layer is (0.05µm). Finally, a back surface field layer was added, which is zinc telluride (ZnTe) with a thickness of (0.1 µm) and its thickness was studied, and its best thickness was (0.05µm) .It was found that the best thickness of the absorbent layer after adding the back surface field layer is (1µm). The final outputs of the cell were as follows: Voc=1.288(V), Jsc=25mA/cm2, FF=89.55%, ƞ=28.82%
利用模拟程序(SCAPS 1-D)研究改变钙钛矿太阳能电池(ZnTe /CH3NH3PbI3 /TiO2/ZnO/FTO)层厚的影响
本研究包括研究钙钛矿太阳能电池(CH3NH3PbI3)/TiO2/ZnO/FTO)各层厚度的影响,选择最佳厚度以获得电池的最高效率,以及使用(SCAPS1-D)研究添加背表面层对太阳能电池效率的影响。采用钙钛矿(CH3NH3PbI3)作为吸收层,其厚度从(1-7µm)开始随着(1µm)的增加进行测试,以获得太阳能电池最佳效率的最佳厚度,其最佳厚度为(5µm),缓冲层(TiO2)的厚度从(0.5-1.5µm)增加(0.25µm)进行测试,其最佳厚度为(0.5µm),测试透明导电氧化物(FTO)层的厚度(0.1-1.1µm)随(0.2µm)的增加而增加,其最佳厚度为(0.1µm缓冲层的厚度为(0.05µm)。最后,添加背面场层,该背面场层是厚度为(0.1µm)的碲化锌(ZnTe),并对其厚度进行了研究,其最佳厚度为(0.05µm),发现添加背面场后的吸收层的最佳厚度为。该电池的最终输出如下:Voc=1.288(V),Jsc=25mA/cm2,FF=89.55%,ƞ=28.82%
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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