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Understanding Mott-Schottky Measurements under Illumination in Organic Bulk Heterojunction Solar Cells

机译:了解有机体异质结太阳能电池在照明下的Mott-Schottky测量

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摘要

The Mott-Schottky analysis in the dark is a frequently used method to determine the doping concentration of semiconductors from capacitance-voltage measurements, even for such complex systems as polymer:fullerene blends used for organic solar cells. While the analysis of capacitance-voltage measurements in the dark is relatively well established, the analysis of data taken under illumination is currently not fully understood. Here, we present experiments and simulations to show which physical mechanisms affect the Mott-Schottky analysis under illumination. We show that the mobility of the blend has a major influence on the shape of the capacitance-voltage curve and can be obtained from data taken under reverse bias. In addition, we show that the apparent shift of the built-in voltage observed previously can be explained by a shift of the onset of space-charge-limited collection with illumination intensity.
机译:在黑暗中进行Mott-Schottky分析是从电容-电压测量中确定半导体掺杂浓度的常用方法,即使对于诸如有机太阳能电池所用的聚合物:富勒烯混合物这样的复杂系统,也是如此。虽然在黑暗中对电容-电压测量的分析已相对完善,但目前尚不完全了解在照明下进行的数据分析。在这里,我们提供实验和模拟,以显示哪些物理机制会影响照明下的Mott-Schottky分析。我们表明,共混物的迁移率对电容-电压曲线的形状有很大影响,可以从反向偏置下获得的数据中获得。此外,我们表明,先前观察到的内建电压的明显偏移可以通过空间电荷受限的集合的开始随照明强度的偏移来解释。

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