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Linking Vertical Bulk-Heterojunction Composition and Transient Photocurrent Dynamics in Organic Solar Cells with Solution-Processed MoOx Contact Layers

机译:将垂直的体异质结组成和有机太阳能电池中的瞬态光电流动力学与溶液处理的MoOx接触层联系起来

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摘要

It is demonstrated that a combination of microsecond transient photocurrent measurements and film morphology characterization can be used to identify a charge-carrier blocking layer within polymer:fullerene bulk-heterojunction solar cells. Solution-processed molybdenum oxide (s-MoOx) interlayers are used to control the morphology of the bulk-heterojunction. By selecting either a low- or high-temperature annealing (70 °C or 150 °C) for the s-MoOx layer, a well-performing device is fabricated with an ideally interconnected, high-efficiency morphology, or a device is fabricated in which the fullerene phase segregates near the hole extracting contact preventing efficient charge extraction. By probing the photocurrent dynamics of these two contrasting model systems as a function of excitation voltage and light intensity, the optoelectronic responses of the solar cells are correlated with the vertical phase composition of the polymer:fullerene active layer, which is known from dynamic secondary-ion mass spectroscopy (DSIMS). Numerical simulations are used to verify and understand the experimental results. The result is a method to detect poor morphologies in operating organic solar cells.
机译:结果表明,微秒瞬态光电流测量和薄膜形态表征的结合可用于识别聚合物:富勒烯本体-异质结太阳能电池中的电荷载流子阻挡层。溶液处理的氧化钼(s-MoOx)中间层用于控制体异质结的形态。通过为s-MoOx层选择低温或高温退火(70°C或150°C),可以制造出具有理想互连,高效形态的性能良好的器件,或者以富勒烯相偏析在空穴提取接触附近,从而阻止了有效的电荷提取。通过探查这两个对比模型系统的光电流动态,该光电流动态是激发电压和光强度的函数,太阳能电池的光电响应与聚合物:富勒烯活性层的垂直相组成相关,这从动态次级-离子质谱(DSIMS)。数值模拟用于验证和理解实验结果。结果是一种检测运行中的有机太阳能电池中不良形态的方法。

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