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Probing Charge Recombination Dynamics in Organic Photovoltaic Devices under Open-Circuit Conditions

机译:在开路条件下探测有机光伏器件中的电荷复合动力学

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摘要

Large perturbation transient photovoltage and impedance spectroscopy measurements are used to gain insights into recombination in organic photovoltaic devices. The combination of these two simple optoelectronic techniques enables characterization of recombination order as well as mobile and trapped charge evolution over a large range of carrier densities. The data show that trapped charge is approximately equal to total charge at low carrier densities in the high efficiency devices measured. Between low and high charge carrier density, the order of recombination is observed to vary from monomolecular to bimolecular to higher order. The new techniques and methods presented can be applied to any type of photovoltage device to gain insight into device operation and limitations.
机译:大型摄动瞬态光电压和阻抗谱测量可用于深入了解有机光伏器件中的复合。这两种简单的光电技术的结合可以表征重组顺序以及在大范围的载流子密度上的移动电荷和俘获电荷。数据表明,在所测量的高效器件中,在低载流子密度下,捕获的电荷大约等于总电荷。在低和高电荷载流子密度之间,观察到重组顺序从单分子到双分子再到更高的顺序变化。提出的新技术和方法可以应用于任何类型的光电压设备,以深入了解设备的操作和局限性。

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