Diffraction-optimized surface structures for enhanced light harvesting in organic solar cells

Milena Merkel, J. Imbrock, C. Denz
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Abstract

Surface phase gratings for organic solar cells are designed, compared and optimized with respect to their ability to diffract incident light and thus increase its path length in the active layer and finally its absorption probability. The gratings are based on concentric rings, a Fermat's spiral or an Archimedean spiral. They exhibit circular symmetric diffraction patterns and therefore diffract light independent of its azimuthal angle. The grating pillars are arranged on these patterns according to a periodic sequence or the deterministic aperiodic Thue-Morse or Rudin-Shapiro sequences to further tailor the desired diffraction pattern. After additional parameter optimization, one of the most promising patterns, the Thue-Morse sequence on an Archimedean spiral, leads to a current density increase of 5%.
用于增强有机太阳能电池光捕获的衍射优化表面结构
对有机太阳能电池表面相位光栅的衍射能力进行了设计、比较和优化,从而增加了入射光在有源层中的路径长度,最终提高了其吸收概率。光栅是基于同心圆,费马螺旋或阿基米德螺旋。它们表现出圆形对称的衍射模式,因此衍射光与它的方位角无关。光栅柱按照周期性序列或确定性非周期性的Thue-Morse或Rudin-Shapiro序列排列在这些图案上,以进一步定制所需的衍射图案。经过额外的参数优化,最有希望的模式之一,即阿基米德螺旋上的Thue-Morse序列,导致电流密度增加5%。
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