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Photo-generated carriers lose energy during extraction from polymer-fullerene solar cells

机译:从聚合物富勒烯太阳能电池中提取时,光生载流子失去能量

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摘要

In photovoltaic devices, the photo-generated charge carriers are typically assumed to be in thermal equilibrium with the lattice. In conventional materials, this assumption is experimentally justified as carrier thermalization completes before any significant carrier transport has occurred. Here, we demonstrate by unifying time-resolved optical and electrical experiments and Monte Carlo simulations over an exceptionally wide dynamic range that in the case of organic photovoltaic devices, this assumption is invalid. As the photo-generated carriers are transported to the electrodes, a substantial amount of their energy is lost by continuous thermalization in the disorder broadened density of states. Since thermalization occurs downward in energy, carrier motion is boosted by this process, leading to a time-dependent carrier mobility as confirmed by direct experiments. We identify the time and distance scales relevant for carrier extraction and show that the photo-generated carriers are extracted from the operating device before reaching thermal equilibrium.
机译:在光伏器件中,通常假定光生电荷载体与晶格处于热平衡。在常规材料中,该假设在实验上是合理的,因为在发生任何重大的载流子传输之前,载流子热化完成了。在这里,我们通过在一个非常宽的动态范围内统一时间分辨的光学和电气实验以及蒙特卡洛模拟来证明这一点,对于有机光伏器件而言,这种假设是无效的。随着光生载流子被传输到电极,由于无序扩展态密度的连续热化,大量的能量损失了。由于热量的向下发生,能量的移动通过此过程得以增强,从而导致了随时间变化的载流子迁移率,这一点已通过直接实验得到了证实。我们确定了与载流子提取相关的时间和距离尺度,并表明光生载流子是在达到热平衡之前从操作设备中提取出来的。

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