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首页> 外文期刊>Advanced energy materials >Charge and Triplet Exciton Generation in Neat PC70BM Films and Hybrid CuSCN:PC_(70)BM Solar Cells
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Charge and Triplet Exciton Generation in Neat PC70BM Films and Hybrid CuSCN:PC_(70)BM Solar Cells

机译:纯PC70BM薄膜和混合CUSCN:PC_(70)BM太阳能电池中的电荷和三联激子发电

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Organic solar cells that use only fullerenes as the photoactive material exhibit poor exciton-to-charge conversion efficiencies, resulting in low internal quantum efficiencies (IQE). However, the IQE can be greatly improved, when copper(I) thiocyanate (CuSCN) is used as a carrier-selective interlayer between the phenyl-C70-butyric acid methyl ester (PC70BM) layer and the anode. Efficiencies of approximate to 5.4% have recently been reported for optimized CuSCN:PC70BM (1:3)-mesostructured heterojunctions, yet the reasons causing the efficiency boost remain unclear. Here, transient absorption (TA) spectroscopy is used to demonstrate that CuSCN does not only act as a carrier-selective electrode layer, but also facilitates fullerene exciton dissociation and hole transfer at the interface with PC70BM. While intrinsic charge generation in neat PC70BM films proceeds with low yield, hybrid films exhibit much improved exciton dissociation due to the presence of abundant interfaces. Triplet generation with a rate proportional to the product of singlet and charge concentrations is observed in neat PC70BM films, implying a charge-singlet spin exchange mechanism, while in hybrid films, this mechanism is absent and triplet formation is a consequence of nongeminate recombination of free charges. At low carrier concentrations, the fraction of charges outweighs the population of triplets, leading to respectable device efficiencies under one sun illumination.
机译:仅使用富勒烯作为光活性材料的有机太阳能电池表现出较差的激子与电荷转化效率,导致内部量子效率低(IQE)。然而,当铜(I)硫氰酸酯(CUSCN)用作苯基-C70-丁酸甲基酯(PC70BM)层和阳极之间的载体选择性中间层时,可以大大提高IQE。最近据报道了优化的CUSCN:PC70BM(1:3)-Mesostuctured的异质结算,效率为5.4%的效率,但导致效率提升的原因仍不清楚。这里,瞬态吸收(TA)光谱法证明CUSCN不仅用作载体选择性电极层,而且还促进了与PC70BM界面处的富勒烯激子解离和空穴传递。虽然整洁的PC70BM膜中的固有电荷产生,但由于存在丰富的界面,杂种膜具有很大改善的激子解离。在整齐的PC70BM薄膜中观察到与单线型和电荷浓度的产物成比例的三重态产生,暗示充电态旋转交换机制,而在杂交膜中,不存在这种机制,并且三重态形成是自由的非氨基酸盐重组的结果收费。在低载体浓度下,电荷的分数超过三元组的群体,导致一个太阳照明的可观的设备效率。

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