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Narrow bandgap CuIn(Se_x,Te_(1-x))_2 - based solar cells for chalcopyrite tandem photovoltaic devices

机译:窄带隙Cuin(SE_X,TE_(1-X))_基于氯化物串联光伏器件的基于2的太阳能电池

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We propose CuIn(Se1-_x,Te_x)_2 as a quaternary chalcopyrite material for narrow-bandgap thin films solar cells, and focus on the purpose of realizing tandem photovoltaic devices by using these solar cells combined with a semi-transparent CIGSe solar cell. Numerical simulations are realized to evaluate the potential of such device, and the effect of the acceptor concentration is studied. High quality CuIn(Se_x,Te_(1-x))_2 films are grown on Mo-coated SLG substrates by 4 sources co-evaporation and a modified three stage process. The films are characterized by transmission-reflection spectroscopy; a very narrow bandgap of less than 0.9 eV is achieved, much smaller than ternary compounds such as CuInSe_2, CuIn_3Te_5 or CuInTe_2. As a result, both J-V and EQE characterizations show a significant increase in the absorption of low energy photons, leading to an improved short circuit current of 41.5mA.cm~(-2) and an efficiency of 7% under standard AM 1.5 illumination. By using a CIGSe layer deposited on glass, we also perform tandem-like J-V and EQE measurements to demonstrate the superiority of the narrow bandgap CuIn(Se_x,Te_(1-x))_2 over wider bandgap ternary compounds in such configuration. A CIGSe-filtered efficiency of η=2% is achieved, more than 3 times higher than that of ternary compounds.
机译:我们将Cuin(Se1-_X,TE_X)_2作为窄带隙薄膜太阳能电池的季氯铜矿材料,并专注于通过使用这些太阳能电池与半透明缩放太阳能电池结合实现串联光伏器件的目的。实现了数值模拟来评估这种装置的电位,并且研究了受体浓度的效果。高质量的Cuin(SE_X,TE_(1-x))_ 2膜在MO涂覆的SLG基材上生长4个来源共蒸发和改性的三级过程。薄膜的特征在于透射反射光谱;实现了小于0.9eV的非常窄的带隙,远小于三元化合物,例如CuinSe_2,Cuin_3Te_5或Cuinte_2。结果,J-V和EQE表征均显示出低能量光子的吸收显着增加,导致41.5mA.cm〜(-2)的短路电流提高,标准AM 1.5照明的效率为7%。通过使用沉积在玻璃上的曲调层,我们还执行串联的J-V和EQE测量,以证明在这种配置中的窄带隙Cuin(SE_X,TE_(1-x))_ 2上的窄带Cuin(SE_x,TE_(1-x))_ 2。达到η= 2%的CIGSE过滤效率,比三元化合物高出3倍以上。

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