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Trap states in ZnPc:C60 small-molecule organic solar cells

机译:ZnPc:C60小分子有机太阳能电池中的陷阱态

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045432-1%Trap states are known to be one of the key parameters limiting charge transport in organic semiconductors and hence the performance of organic solar cells. Here, small-molecule organic solar cells based on a bulk heterojunction between zinc-phtalocyanine (ZnPc) and the fullerene C60 are characterized according to their trapping nature by noninvasive methods and under ambient conditions. We show how impedance spectroscopy, applied to systematically varied device structures, reveals the trap localization as well as its occupation mechanisms. Further insight is given from investigations of different device working points and illumination intensities. Thus, we find the traps to be bulk states in the active layer with an electron-trapping nature. They can be described by a Gaussian energy distribution of 55 meV width, centered at 0.46 eV below the electron transport level and with a concentration of 3.5 × 10~(16) cm~(-3). Moreover, the trap states act as recombination centers in the presence of injected or photogenerated charge carriers. The results are confirmed by electrical simulations.
机译:045432-1%陷阱态是限制有机半导体中电荷传输并因此限制有机太阳能电池性能的关键参数之一。在此,基于锌酞菁(ZnPc)和富勒烯C60之间的本体异质结的小分子有机太阳能电池根据其捕获性质,通过无创方法和在环境条件下表征。我们展示了如何将阻抗光谱技术应用于系统地变化的器件结构,揭示陷阱的定位及其占用机制。通过研究不同的设备工作点和照明强度,可以进一步了解。因此,我们发现陷阱在具有电子俘获性质的有源层中为体态。它们可以用55 meV宽度的高斯能量分布来描述,中心在电子传输能级以下0.46 eV,浓度为3.5×10〜(16)cm〜(-3)。此外,在注入或光生电荷载流子的存在下,陷阱态充当重组中心。通过电仿真证实了结果。

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