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Enhanced performance of polymer bulk heterojunction solar cells employing multifunctional iridium complexes

机译:使用多功能铱配合物的聚合物本体异质结太阳能电池的增强性能

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We report on the enhanced performance of polymer bulk heterojunction solar cells composed of an iridium complex with pendant sodium cations (pqIrpicNa) as an energy donor, poly(3-hexylthiophene) (P3HT) as an energy acceptor, polyethylene oxide (PEO) as an ion channel, and PCBM as an electron acceptor. With the iridium complex and PEO as additives, we observe a 20% increase in the current density, from 8.57 mA cm(-2) to 10.24 mA cm(-2), and a photoconversion efficiency of up to 3.4%. The observed enhancement in current density comes primarily from an efficient triplet-singlet energy transfer from the iridium complex to P3HT. Transient photoluminescence studies reveal triplet-singlet energy transfer efficiency from pqIrpicNa to P3HT of over 99%. Because of this high energy transfer efficiency, an enhancement is observed in the incident photon-to-conversion efficiency spectrum between 350 and 550 nm, which overlaps with the absorption range of the iridium complex. We also observe enhanced nanophase segregation of the active layer with pqIrpicaNa and PEO by atomic force microscopy. We propose that the observed enhancement in the current density stems not only from the enhancement in the morphology with the iridium complex, but also from the enhanced mobility of the sodium cations toward the metal electrodes through the ion channel of PEO under sunlight, which results in an increased charge collection at the electrodes.
机译:我们报告的聚合物本体异质结太阳能电池的性能增强,该太阳能电池由铱配合物与钠离子悬垂阳离子(pqIrpicNa)作为能量供体,聚(3-己基噻吩)(P3HT)作为能量受体,聚环氧乙烷(PEO)作为离子通道,PCBM作为电子受体。使用铱配合物和PEO作为添加剂,我们观察到电流密度增加了20%,从8.57 mA cm(-2)增加到10.24 mA cm(-2),并且光转换效率高达3.4%。观察到的电流密度的提高主要来自从铱络合物到P3HT的有效三重态-单重态能量转移。瞬态光致发光研究表明,从pqIrpicNa到P3HT的三重态-单态能量转移效率超过99%。由于这种高能量转移效率,在350至550 nm之间的入射光子转换效率光谱中观察到了增强,该光谱与铱络合物的吸收范围重叠。我们还通过原子力显微镜观察到了pqIrpicaNa和PEO增强了活性层的纳米相。我们提出,观察到的电流密度的增强不仅是由于铱配合物的形貌增强,而且还因为钠阳离子在阳光下通过PEO的离子通道向金属电极的迁移性增强,导致电极处的电荷收集增加。

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