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A Bifunctional Copolymer Additive to Utilize Photoenergy Transfer and To Improve Hole Mobility for Organic Ternary Bulk-Heterojunction Solar Cell

机译:利用光能转移并提高有机三元本体-异质结太阳能电池空穴迁移率的双功能共聚物添加剂

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摘要

To realize the high efficiency organic photovoltaics (OPVs), two critical requirements have to be fulfilled: (1) increasing the photon energy absorption range of the active layer, and (2) improving charge separation and transport in the active layer. This study reports the utilization of THC8, a novel fluorescence-based polymer containing propeller-shaped di-triarylamine and fluorene moieties in the active layer consisting of poly-3-hexylthiophene and [6,6]-phenyl-C61-butyric acid methyl ester to form a ternary bulk heterojunction. The results showed that the high absorbance and strong fluorescence of THC8 at 420 and 510 nm, respectively, broadened the spectral absorption of the OPV, possibly through Forster resonance energy transfer. In addition, the morphology of the device active layer was improved with the addition of a suitable amount of THC8. Consequently, the charge transport property of the active layer was improved. The best power conversion efficiency (PCE) of the device with THC8 was 3.88%, a 25% increase compared to the PCE of a pristine OPV.
机译:为了实现高效有机光伏(OPV),必须满足两个关键要求:(1)增加有源层的光子能量吸收范围,以及(2)改善有源层中的电荷分离和传输。这项研究报告了THC8的利用,它是一种新型的基于荧光的聚合物,该聚合物在由聚-3-己基噻吩和[6,6]-苯基-C61-丁酸甲酯组成的活性层中包含螺旋桨状的二三芳基胺和芴部分形成三元本体异质结。结果表明,THC8分别在420和510 nm处具有高吸收和强荧光,可能通过Forster共振能量转移扩大了OPV的光谱吸收。另外,通过添加适当量的THC8,改善了器件有源层的形态。因此,改善了有源层的电荷传输性质。具有THC8的器件的最佳功率转换效率(PCE)为3.88%,与原始OPV的PCE相比提高了25%。

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