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Spatial distribution of light absorption in organic photovoltaic devices

机译:有机光伏器件中光吸收的空间分布

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In this paper we present methods for the optimization of light absorption of organic photoelectric bilayer devices like organic photodetectors and organic solar cells, which show the best performance if it is ensured that the spatial density of the absorbed light energy reaches its maximum in certain "active" areas. Mathematical simulations show interesting spatial distributions of light absorption depending on the thicknesses and the optical constants of the individual device layers. Our methods permit to dispose the maxima of absorption density to the area near the interface between the active layers of the bilayer device. We built photovoltaic devices according to the simulated configurations and gained improvements of the power conversion efficiencies of more than one magnitude. Parametric studies were carried out, which give us a suggestion for the potential active materials. Furthermore we analyzed the correlation between the pho-tocurrent and the absorption density in given areas around the p-n junction, which will lead to better understanding of the diffusion range of dissociated charge carriers.
机译:在本文中,我们介绍了用于优化有机光电双层器件(如有机光电探测器和有机太阳能电池)的光吸收的方法,如果确保在某些“有源”条件下吸收的光能的空间密度达到最大值,则该方法将表现出最佳性能。 ”区域。数学模拟显示了有趣的光吸收空间分布,具体取决于各个器件层的厚度和光学常数。我们的方法允许将吸收密度的最大值设置在双层设备的有源层之间的界面附近的区域。我们根据模拟配置构建了光伏器件,并获得了超过一个数量级的功率转换效率改进。进行了参数研究,为我们提供了潜在活性材料的建议。此外,我们分析了光电流与p-n结周围给定区域中吸收密度之间的相关性,这将有助于更好地理解解离的电荷载流子的扩散范围。

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