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Simulating the performance of a highly efficient CuBi_2O_4‑based thin‑film solar cell

机译:模拟高效Cubi_2O_4薄膜太阳能电池的性能

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摘要

In this study, copper bismuth oxide (CuBi2O4) absorber-based thin film heterojunction solar cell structure consisting of Al/FTO/CdS/CuBi2O4/Ni has been proposed. The proposed solar cell device structure has been modeled and analyzed by using the solar cell capacitance simulator in one dimension (SCAPS-1D) software program. The performance of the proposed photovoltaic device is evaluated numerically by varying thickness, doping concentrations, defect density, operating temperature, back metal contact work function, series and shunt resistances. The current density-voltage behaviors at dark and under illumination are investigated. To realize the high efficiency CuBi2O4-based solar cell, the thickness, acceptor and donor densities, defect densities of different layers have been optimized. The present work reveals that the power conversion efficiency can be enhanced by increasing the absorber layer thickness. The efficiency of 26.0% with open-circuit voltage of 0.97 V, short-circuit current density of 31.61 mA/cm(2), and fill-factor of 84.58% is achieved for the proposed solar cell at the optimum 2.0-mu m-thick CuBi2O4 absorber layer. It is suggested that the p-type CuBi2O4 material proposed in the present study can be employed as a promising absorber layer for applications in the low cost and high efficiency thin-film solar cells.
机译:在该研究中,已经提出了由Al / FTO / CDS / Cubi2O4 / Ni组成的氧化铜氧化物(Cubi2O4)基于吸收剂的薄膜异质结太阳能电池结构。所提出的太阳能电池器件结构已经通过在一个维度(SCAPS-1D)软件程序中使用太阳能电池电容模拟器进行建模和分析。通过不同的厚度,掺杂浓度,缺陷密度,操作温度,背金属接触工作功能,串联和分流电阻,数值通过不同的厚度,掺杂浓度,缺陷,数值进行数字地评价所提出的光伏器件的性能。研究了暗和照明的电流密度 - 电压行为。为了实现基于高效的Cubi2O4的太阳能电池,厚度,受体和供体密度,已经优化了不同层的缺陷密度。本工作揭示了通过增加吸收层厚度可以提高功率转换效率。效率为26.0%,开路电压为0.97 V,短路电流密度为31.61 mA / cm(2),并且在最佳的2.0-mu m-m-中提出的太阳能电池实现了84.58%的填充因子。厚的Cubi2O4吸收层。建议本研究中提出的p型立方体2O4材料可以用作低成本和高效薄膜太阳能电池中的应用的有望吸收层。

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