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Influence of Surface Recombination on Charge-Carrier Kinetics in Organic Bulk Heterojunction Solar Cells with Nickel Oxide Interlayers

机译:表面复合对带有氧化镍夹层的有机体异质结太阳能电池中载流子动力学的影响

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摘要

The choice of electrode for organic photovoltaics is known to be of importance to both device stability and performance, especially regarding the open-circuit voltage (VOC). Here we show that the work function of a nickel oxide anode, varied using an O2 plasma treatment, has a considerable influence on the open-circuit voltage VOC of an organic solar cell. We probe recombination in the devices using transient photovoltage and charge extraction to determine the lifetime as a function of charge-carrier concentration and compare the experimental results with numerical drift-diffusion simulations. This combination of experiment and simulations allows us to conclude that the variations in VOC are due to a change in surface recombination, localized at the NiO anode, although only a small change in carrier lifetime is observed.
机译:已知用于有机光伏的电极的选择对于装置稳定性和性能均重要,特别是对于开路电压(VOC)而言。在这里,我们显示了使用O2等离子体处理改变的氧化镍阳极的功函数对有机太阳能电池的开路电压VOC有很大影响。我们使用瞬态光电压和电荷提取来探测器件中的重组,以确定寿命与电荷载流子浓度的函数关系,并将实验结果与数值漂移-扩散模拟进行比较。实验和模拟的这种结合使我们可以得出结论,尽管仅观察到了载流子寿命的微小变化,VOC的变化是由于表面复合的变化所致,位于NiO阳极上。

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