Light intensity and temperature effect on the DC parameters of optimized nc-3C-Sic:H Based solar cell

Y. Belhadji
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Abstract

The Hydrogenated nanocrystalline cubic silicon carbide (nc-3C-Si:H) based solar cell with interesting efficiency, find her place promoted in photovoltaic  applications. To improve the sunlight absorption and its electrical performances, the structure of the solar cell can be optimized, combining new  materials to form multi-layers solar cells. In this context, the nc-3C-SiC:H, having a wide band gap, excellent optical, electrical and structural properties is used as wide bandgap absorber layer. In this work, we report a theoretical study of new optimized nc-3C-SiC:H/ i-a-Si:H/ a-Si:H/ µc-Si solar cell using the  SCAPS one dimension program. We investigate the temperature and incident light intensity effect on the DC parameters of the solar cell. For the  proposed structure, optimal power conversion efficiency (PCE) of 16.89% is registered under AM1.5G spectrum at room temperature.
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光强和温度对优化的nc-3C-Sic:H基太阳能电池直流参数的影响
氢化纳米晶立方碳化硅(nc-3C-Si:H)基太阳能电池以其优异的效率,在光伏领域有一定的应用前景。为了提高太阳能电池的阳光吸收和电性能,可以优化太阳能电池的结构,结合新材料形成多层太阳能电池。在这种情况下,nc-3C-SiC:H具有宽带隙、优异的光学、电学和结构性能,被用作宽带隙吸收层。在这项工作中,我们报告了使用SCAPS一维程序对新型优化的nc-3C-SiC:H/ i-a-Si:H/ a- si:H/µc-Si太阳能电池的理论研究。研究了温度和入射光强对太阳能电池直流参数的影响。对于所提出的结构,室温下AM1.5G光谱下的最佳功率转换效率(PCE)为16.89%。
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