首页> 外文会议>World Conference on Photovoltaic Energy Conversion;European Photovoltaic Solar Energy Conference;Photovoltaic Science and Engineering Conference;IEEE Photovoltaic Specialist Conference >The Interaction of Ion Migration with Shockley-Read-Hall Recombination in the Bulk of Perovskite Solar Cells Explains Anomalous Voltage and Luminescence Transients
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The Interaction of Ion Migration with Shockley-Read-Hall Recombination in the Bulk of Perovskite Solar Cells Explains Anomalous Voltage and Luminescence Transients

机译:钙钛矿型太阳能电池中离子迁移与Shockley-Read-Hall重组的相互作用解释了异常电压和发光瞬态。

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Slow transient responses in perovskite solar cells have been attributed to a range of possible mechanisms, but the migration of ionic charge is a leading candidate. In this paper, we present an overview of the results of a transient numerical model of drift-diffusion in a semiconductor device, to which we add mobile ionic charge, to demonstrate that a range of monotonic and non-monotonic transient voltage and luminescence responses described in the perovskite literature can be replicated with the movement on ionic charge. These include some unusual non-monotonic responses that have previously been attributed to multiple, competing mechanisms. We observe that the key mechanism instead is the interaction of the ionic charge on the distribution of electrons and holes and a subsequent change in the distribution of trap-mediated recombination that is modelled after Shockley-Read-Hall statistics. These results are evidence for the value of a rigorous computation of the interaction of ion migration and traditional semiconductor charge transport models to reveal interactions between ion migration and recombination in perovskite solar cells that might otherwise escape our intuition.
机译:钙钛矿太阳能电池中缓慢的瞬态响应被归因于一系列可能的机理,但是离子电荷的迁移是主要的候选者。在本文中,我们概述了半导体器件中漂移扩散瞬态数值模型的结果,并向其中添加了移动离子电荷,以证明描述了一系列单调和非单调的瞬态电压和发光响应钙钛矿中的文献可以随着离子电荷的运动而复制。这些包括一些不寻常的非单调响应,这些响应先前归因于多种竞争机制。我们观察到,关键的机理是离子电荷在电子和空穴的分布上的相互作用以及陷阱电击复合的分布的随后变化,该变化是根据Shockley-Read-Hall统计数据建模的。这些结果为严格计算离子迁移与传统半导体电荷传输模型之间的相互作用的价值提供了证据,以揭示钙钛矿型太阳能电池中离子迁移与复合之间的相互作用,而这种相互作用本来可以避免我们的直觉。

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