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Modifications in Morphology Resulting from Nanoimprinting Bulk Heterojunction Blends for Light Trapping Organic Solar Cell Designs

机译:纳米压印块状异质结共混物用于光阱有机太阳能电池设计的形态学变化。

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Nanoimprinting the photoactive layer of bulk heterojunction (BHJ) organic solar cells is a promising technique for enhancing device performance via improved light absorption. Here, we demonstrate that imprinting poly(3-hexylthiophene) (P3HT) and fullerene BHJ blends leads to adverse morphological changes within the photoactive nanopattern which have been previously overlooked. In particular, nanoimprinting induces a factor of 2 difference in polymenfullerene composition between the nanopattern posts and interconnecting flash layer that inadvertently moves the composition outside the range for optimal performance. This occurs because of the strong tendency of regioregular P3HT to crystallize since imprinting blends based on amorphous regiorandom P3HT have uniform nanopattern composition. Based on these results, we outline promising design strategies, such as nanoimprinting amorphous polymers, to serve as guidelines for fabricating high-performance nanopatterned BHJ solar cells capable of maximized light absorption.
机译:纳米压印体异质结(BHJ)有机太阳能电池的光敏层是一种通过改善光吸收来增强器件性能的有前途的技术。在这里,我们证明印迹聚(3-己基噻吩)(P3HT)和富勒烯BHJ共混物会导致光敏纳米图案内部出现不利的形态变化,而这种变化先前已被忽略。特别地,纳米压印引起纳米图案柱和互连闪光层之间的聚富勒烯组成的2倍的差异,其无意中将组成移动到最佳性能的范围之外。这是由于基于规则的无规P3HT的印迹共混物具有均匀的纳米图案组成,从而使规则的P3HT具有很强的结晶趋势。基于这些结果,我们概述了有前途的设计策略,例如纳米压印非晶态聚合物,可作为制造能够最大程度吸收光的高性能纳米图案BHJ太阳能电池的指南。

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