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Enhancing the Performance of Solution-Processed Bulk-Heterojunction Solar Cells Using Hydrogen-Bonding-Induced Self-Organization of Small Molecules

机译:利用氢键诱导的小分子自组织增强固溶体异质结太阳能电池的性能

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摘要

Small-molecule solar-cell performance is highly sensitive to the crystallinity and intermolecular connectivity of the molecules. In order to enhance the crystallinity for the solution-processed small molecule, it is possible to make use of carboxylic acid end-functional groups to drive hydrogen-bonding-induced n-n stacking of conjugated molecules. Herein, we report the synthesis and characterization of quarterthiophenes with carboxylic acid as end groups. The formation of hydrogen bonds between neighboring acid groups gives rise to a pseudo-polymeric structure in the molecules, which leads to substantial improvement in the organization and crystallinity of the active layers. This resulted in a four-fold increase in the hole mobility and a two-fold improvement in the performance of the solar cell device for the acid- functionalized molecule, compared to its ester analogue. More importantly, optimal device performance for the acid-functionalized molecule was achieved for the as-cast film, thereby reducing the reliance on thermal annealing and solvent additives.
机译:小分子太阳能电池的性能对分子的结晶度和分子间连接性高度敏感。为了提高溶液加工的小分子的结晶度,可以利用羧酸端基官能团来驱动氢键诱导的共轭分子的n-n堆积。在本文中,我们报道了以羧酸为端基的四噻吩的合成和表征。相邻酸基团之间氢键的形成在分子中产生假聚合物结构,这导致活性层的组织和结晶度得到实质性改善。与它的酯类似物相比,这导致了对酸官能化分子的空穴迁移率提高了四倍,太阳能电池装置的性能提高了两倍。更重要的是,铸态薄膜获得了酸官能化分子的最佳器件性能,从而减少了对热退火和溶剂添加剂的依赖。

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