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P3HT-Based Polymer Solar Cells with Unfused Bithiophene-Rhodanine-based Nonfullerene Acceptors

机译:基于P3HT的聚合物太阳能电池,具有未用的白藜芦醇丁胺 - 罗达尼 - 罗丹宁的非氟联受体受体

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摘要

We synthesized unfused bithiophene-based small molecules containing rhodanine (RH) dye end groups for use as acceptors in solution-processable polymer solar cells (PSCs). T2-ERH and T2-ORH were designed to have different alkyl side-chain lengths (ethyl and octyl, respectively), which enabled the optical properties and packing behavior of the corresponding films to be varied. PSCs were fabricated using poly(3-hexylthiophene) (P3HT) and one of the small molecules as a polymer donor and an acceptor, respectively. A power conversion efficiency of 1.81% was attained with the device based on P3HT and T2-ORH. The enhanced solubility resulting from the long octyl side chain resulted in a highly homogeneous morphology of the P3HT:T2-ORB film. In this study, we demonstrate the easy synthesis of RH-based bithiophenes, potentially providing a useful platform for developing nonfullerene small-molecule acceptors.
机译:我们合成了含有罗丹宁(RH)染料末端基团的未使用的二硫代丙蛋白的小分子,其用作溶液加工聚合物太阳能电池(PSC)中的受体。 T2-ERH和T2-ORH设计成具有不同的烷基侧链长度(分别为乙基和辛基),其使得相应的相应膜的光学性质和包装行为能够变化。 使用聚(3-己基噻吩)(P3HT)和作为聚合物供体和受体的小分子之一制造PSCs。 基于P3HT和T2-ORH的器件,使用该装置实现1.81%的电力转换效率。 由长辛基侧链产生的增强溶解度导致P3HT:T2-ORB膜的高度均匀形态。 在这项研究中,我们证明了易于合成的Rh基石核,潜在地为开发非含有非氟联的小分子受体提供有用的平台。

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