论文标题

基于牙花酸镉(CDTE)和铁硅化铁(FESI2)的双吸收剂太阳能电池的设计和数值研究,以提高功率转换效率

Design and numerical investigation of cadmium telluride (CdTe) and iron silicide (FeSi2) based double absorber solar cells to enhance power conversion efficiency

论文作者

Rahman, Md. Ferdous, Habib, M. J. A., Ali, Md. Hasan, Rubel, M. H. K., Islam, M. Rounakul, Ismail, Abu Bakar Md., Hossain, M. Khalid

论文摘要

与常规太阳能电池相比,无机CDTE和基于FESI2的太阳能电池最近引起了很多关注,因为它们具有优异的热稳定性和良好的光电特性。在这项工作中,通过将FESI2用作二级吸收层和In2S3作为改善光伏(PV)性能参数的窗口层来提供独特的替代技术。在SCAPS-1D上进行模拟,对拟议的双吸收仪(CU/FTO/IN2S3/CDTE/FESI2/NI)结构进行了彻底检查和分析。详细模拟了窗户层厚度,吸收层厚度,受体密度(NA),供体密度(ND),缺陷密度(NT),串联电阻(RS)和分流电阻(RSH)(RSH),以优化上述配置以提高PV性能。根据这项研究,0.5 UM是CDTE和FESI2吸收层的优化厚度,以最大程度地提高效率。在这里,最佳窗口层厚度的值为50 nm。对于使用CDTE作为单个吸收剂,效率可实现13.26%。但是,对于使用CDTE和FESI2作为双吸收剂,效率得到提高,并且获得值为27.35%。其他参数也得到改善,填充因子的获得值(FF)为83.68%,开路电压(VOC)为0.6566V,短路电流密度(JSC)为49.78 mA/cm2。此外,所提出的模型在300 K工作温度下表现良好。由于太阳能频谱吸收在较长的波长下,FESI2层在细胞结构中的添加导致了显着的量子效率(QE)。这项工作的发现为产生高性能和价格合理的基于CDTE的太阳能电池提供了有希望的方法。

Inorganic CdTe and FeSi2-based solar cells have recently drawn a lot of attention because they offer superior thermal stability and good optoelectronic properties compared to conventional solar cells. In this work, a unique alternative technique is presented by using FeSi2 as a secondary absorber layer and In2S3 as the window layer for improving photovoltaic (PV) performance parameters. Simulating on SCAPS-1D, the proposed double-absorber (Cu/FTO/In2S3/CdTe/FeSi2/Ni) structure is thoroughly examined and analyzed. The window layer thickness, absorber layer thickness, acceptor density (NA), donor density (ND), defect density (Nt), series resistance (RS), and shunt resistance (Rsh) were simulated in detail for optimization of the above configuration to improve PV performance. According to this study, 0.5 um is the optimized thickness for both the CdTe and FeSi2 absorber layers in order to maximize efficiency. Here, the value of the optimum window layer thickness is 50 nm. For using CdTe as a single absorber, the efficiency is achieved by 13.26%. But for using CdTe and FeSi2 as a dual absorber, the efficiency is enhanced and the obtaining value is 27.35%. The other parameters are also improved and the obtaining values for fill factor (FF) are 83.68%, open-circuit voltage (Voc) is 0.6566V, and short circuit current density (JSc) is 49.78 mA/cm2. Furthermore, the proposed model performs good at 300 K operating temperature. The addition of the FeSi2 layer to the cell structure has resulted in a significant quantum efficiency (QE) enhancement because of the rise in solar spectrum absorption at longer wavelengths. The findings of this work offer a promising approach for producing high-performance and reasonably priced CdTe-based solar cells.

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