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Broadband and wide-angle light harvesting by ultra-thin silicon solar cells with partially embedded dielectric spheres

机译:具有部分嵌入的介电球的超薄硅太阳能电池进行宽带和广角光收集

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We propose a design of crystalline silicon thin-film solar cells (c-Si TFSCs, 2 mu m-thick) configured with partially embedded dielectric spheres on the light-injecting side. The intrinsic light trapping and photoconversion are simulated by the complete optoelectronic simulation. It shows that the embedding depth of the spheres provides an effective way to modulate and significantly enhance the optical absorption. Compared to the conventional planar and front sphere systems, the optimized partially embedded sphere design enables a broadband, wide-angle, and strong optical absorption and efficient carrier transportation. Optoelectronic simulation predicts that a 2 mu m-thick c-Si TFSC with half-embedded spheres shows an increment of more than 10 mA/cm(2) in short-circuit current density and an enhancement ratio of more than 56% in light-conversion efficiency, compared to the conventional planar counterparts. (C) 2016 Optical Society of America
机译:我们提出了一种晶体硅薄膜太阳能电池(c-Si TFSC,2微米厚)的设计,在注入光的一侧配置了部分嵌入的介电球。通过完整的光电模拟对本征光捕获和光电转换进行了模拟。它表明,球的嵌入深度提供了一种有效的方式来调制并显着增强光吸收。与传统的平面和前球系统相比,优化的部分嵌入球设计可实现宽带,广角和强光吸收以及有效的载流子传输。光电仿真预测,具有半嵌入式球体的2微米厚的c-Si TFSC在短路电流密度方面显示出大于10 mA / cm(2)的增加,而在光环境中显示出的增强比超过56%。与传统平面同类产品相比,转换效率更高。 (C)2016美国眼镜学会

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