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A molecular nematic liquid crystalline material for high-performance organic photovoltaics

机译:用于高性能有机光伏器件的分子向列型液晶材料

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摘要

Solution-processed organic photovoltaic cells (OPVs) hold great promise to enable roll-to-roll printing of environmentally friendly, mechanically flexible and cost-effective photovoltaic devices. Nevertheless, many high-performing systems show best power conversion efficiencies (PCEs) with a thin active layer (thickness is ~100 nm) that is difficult to translate to roll-to-roll processing with high reproducibility. Here we report a new molecular donor, benzodithiophene terthiophene rhodanine (BTR), which exhibits good processability, nematic liquid crystalline behaviour and excellent optoelectronic properties. A maximum PCE of 9.3% is achieved under AM 1.5G solar irradiation, with fill factor reaching 77%, rarely achieved in solution-processed OPVs. Particularly promising is the fact that BTR-based devices with active layer thicknesses up to 400 nm can still afford high fill factor of ~70% and high PCE of ~8%. Together, the results suggest, with better device architectures for longer device lifetime, BTR is an ideal candidate for mass production of OPVs.
机译:溶液处理的有机光伏电池(OPV)有望实现卷对卷印刷的环保,机械柔性和经济高效的光伏设备。然而,许多高性能系统显示出最佳的功率转换效率(PCE),且有源层薄(厚度约为100〜nm),难以转化为具有高重现性的卷对卷处理。在这里,我们报告了一种新的分子供体,苯并二噻吩,特噻吩罗丹宁(BTR),它具有良好的可加工性,向列型液晶行为和出色的光电性能。在AM 1.5G太阳光下,最大PCE达到9.3%,填充系数达到77%,这在溶液处理的OPV中很少实现。特别有希望的事实是,有源层厚度高达400μnm的基于BTR的器件仍然可以提供〜70%的高填充率和〜8%的高PCE。总之,结果表明,BTR具有更好的设备架构和更长的设备寿命,是批量生产OPV的理想选择。

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