首页> 外文会议>SPIE Conference on Nanostructured Thin Films >Optimization of light trapping in ultrathin nonhomogeneous CuIn1-ξGaξSe2 solar cell backed by 1D periodically corrugated backreflector
【24h】

Optimization of light trapping in ultrathin nonhomogeneous CuIn1-ξGaξSe2 solar cell backed by 1D periodically corrugated backreflector

机译:优化超薄非均匀Cuin1-ξgaξSe2太阳能电池的光诱捕,通过张定期波纹反向折叠

获取原文

摘要

We studied the optimization of an ultrathin CuIn1-ξGaξSe2 (CIGS) solar cell with a nonhomogeneous CIGS absorber layer and backed by a 1D metallic periodically corrugated back-reflector (PCBR) with a rectangular profile. Nonhomogeneity in the CIGS absorber layer was modeled through either a sinusoidal or a linear bandgap variation along the thickness direction. The maximum power density for the AM1.5G spectrum was determined from the spectrum of the useful solar absorptance computed using the rigorous coupled-wave approach. Ultrathin solar cells with optimized PCBR and homogenous bandgap depending on the thickness of the CIGS layer were found to deliver the best photonic absorption characteristics. The open-circuit voltage, efficiency, and fill factor were calculated for the optimal designs using values of the reverse-saturation current density, ideality factor, and the series resistance density obtained from experimental results. The overall trend is that the effect of the PCBR becomes less prominent as the thickness of the CIGS absorber layer increases. Higher efficiency and fill factor can be achieved with a solar cell containing as 400-nm-thick CIGS layer compared to the conventional solar cell with a 2200-nm-thick CIGS layer.
机译:我们研究了使用非均匀CIGS吸收层的超致丙烯Cuin1-ξgaSe2(CIGS)太阳能电池的优化,并用矩形轮廓由1D金属周期性波纹背反射器(PCBR)用。通过沿厚度方向的正弦或线性带隙变化模拟CIGS吸收层中的非均匀性。根据使用严格耦合波方法计算的有用太阳能吸收率的频谱确定了AM1.5G频谱的最大功率密度。发现超太阳能电池具有优化的PCBR和均匀的带隙,这取决于CIGS层的厚度,以提供最佳的光子吸收特性。使用从实验结果中获得的反向饱和电流密度,理想因子和串联电阻密度的值来计算开路电压,效率和填充因子。总体趋势是,随着CIGS吸收层的厚度增加,PCBR的效果变得不那么突出。与具有2200nm厚的CIGS层的常规太阳能电池相比,通过含有400nm厚的CIGS层的太阳能电池可以实现更高的效率和填充因子。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号