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空间电荷效应在具有低迁移率光活性层的太阳能电池中对复合与提取竞争的作用。

The Role of Space Charge Effects on the Competition between Recombination and Extraction in Solar Cells with Low-Mobility Photoactive Layers.

作者信息

Stolterfoht Martin, Armin Ardalan, Philippa Bronson, Neher Dieter

机构信息

Institute of Physics and Astronomy, University of Potsdam , Karl-Liebknecht-Straße 24-25, D-14476 Potsdam-Golm, Germany.

Centre for Organic Photonics & Electronics (COPE), School of Mathematics and Physics, The University of Queensland , Brisbane 4072, Australia.

出版信息

J Phys Chem Lett. 2016 Nov 17;7(22):4716-4721. doi: 10.1021/acs.jpclett.6b02106. Epub 2016 Nov 9.

Abstract

The competition between charge extraction and nongeminate recombination critically determines the current-voltage characteristics of organic solar cells (OSCs) and their fill factor. As a measure of this competition, several figures of merit (FOMs) have been put forward; however, the impact of space charge effects has been either neglected, or not specifically addressed. Here we revisit recently reported FOMs and discuss the role of space charge effects on the interplay between recombination and extraction. We find that space charge effects are the primary cause for the onset of recombination in so-called non-Langevin systems, which also depends on the slower carrier mobility and recombination coefficient. The conclusions are supported with numerical calculations and experimental results of 25 different donor/acceptor OSCs with different charge transport parameters, active layer thicknesses or composition ratios. The findings represent a conclusive understanding of bimolecular recombination for drift dominated photocurrents and allow one to minimize these losses for given device parameters.

摘要

电荷提取与非均相复合之间的竞争决定性地决定了有机太阳能电池(OSC)的电流-电压特性及其填充因子。作为这种竞争的一种衡量方式,已经提出了几个品质因数(FOM);然而,空间电荷效应的影响要么被忽略,要么没有得到具体探讨。在此,我们重新审视最近报道的FOM,并讨论空间电荷效应在复合与提取之间相互作用中的作用。我们发现,空间电荷效应是所谓非朗之万系统中复合开始的主要原因,这也取决于较慢的载流子迁移率和复合系数。通过对25种具有不同电荷传输参数、活性层厚度或组成比的不同供体/受体OSC进行数值计算和实验结果,支持了这些结论。这些发现代表了对漂移主导光电流的双分子复合的确定性理解,并使人们能够在给定器件参数的情况下将这些损失降至最低。

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