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A building-block approach to the development of an equivalent circuit model for organic photovoltaic cells

机译:开发有机光伏电池等效电路模型的构建方法

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摘要

A novel approach to equivalent circuit modelling of organic photovoltaic (OPV) cells capable of simulating both optimal and degraded devices has been developed. Freshly made OPVs (composed of an active layer with a blended poly (3-hexylthiophene) (P3HT) and indene-C60 bisadduct (ICBA) film), that exhibit a characteristic ‘J’ shaped current-voltage (I-V) curve both in the dark and under illumination, are typically fitted to a one-diode equivalent circuit model. However, as device performance deteriorates, the I-V curve undergoes a series of changes resulting in the evolution of an ‘S’ shaped I-V curve, for which there is no widely accepted equivalent circuit model. Here we present a building-block approach to develop a simple equivalent circuit model which provides an excellent fit to experimental I-V data spanning the continuum from the ideal ‘J’ to degraded ‘S’ shaped curves. Applying this new model to P3HT:ICBA devices provides insights into the physical processes that occur during degradation.
机译:已经开发出一种新颖的方法,能够对有机光伏(OPV)电池进行等效电路建模,从而能够模拟最佳器件和退化器件。新鲜制作的OPV(由活性层和聚(3-己基噻吩)(P3HT)和茚-C60双加合物(ICBA)混合膜组成)在两个方向上均具有特征性的“ J”形电流-电压(IV)曲线。通常在暗和光照条件下安装到一二极管等效电路模型。但是,随着器件性能下降,I-V曲线会发生一系列变化,从而导致形成“ S”形的I-V曲线,而目前尚无公认的等效电路模型。在这里,我们提出了一种构建简单等效电路模型的构建方法,该模型非常适合实验I-V数据,该数据涵盖了从理想的“ J”形到退化的“ S”形曲线的连续体。将此新模型应用于P3HT:ICBA设备可洞察降解期间发生的物理过程。

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