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Reverse Bias Behavior of Halide Perovskite Solar Cells

机译:卤化物钙钛矿太阳能电池的反向偏置行为

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摘要

The future commercialization of halide perovskite solar cells relies on improving their stability. There are several studies focused on understanding degradation under operating conditions in light, but little is known about the stability of these solar cells under reverse bias conditions. Reverse bias stability is important because shaded cells in a module are put into reverse bias by the illuminated cells. In this paper, a phenomenological study is presented of the reverse bias behavior of halide perovskite solar cells and it is shown that reverse bias can lead to a partially recoverable loss in efficiency, primarily caused by a decrease in V-OC. A general mechanism is proposed, supported by drift-diffusion simulations, to explain how these cells breakdown via tunneling caused by accumulated ionic defects and suggests that the reversible loss in efficiency may be due to an electrochemical reaction of these defects. Finally, the implications of these phenomena are discussed and how they can possibly be addressed is also discussed.
机译:卤化物钙钛矿太阳能电池的未来商业化依赖于其稳定性的提高。有几项研究致力于了解光在工作条件下的退化,但对这些太阳能电池在反向偏置条件下的稳定性知之甚少。反向偏置稳定性很重要,因为模块中的阴影单元会被照亮的单元置于反向偏置状态。在本文中,对卤化物钙钛矿太阳能电池的反向偏置行为进行了现象学研究,结果表明,反向偏置可以导致效率的部分可恢复损失,这主要是由V-OC的降低引起的。提出了一种通用机制,并由漂移扩散模拟支持,以解释这些电池如何通过由累积的离子缺陷引起的隧穿而击穿,并暗示效率的可逆损失可能是由于这些缺陷的电化学反应所致。最后,讨论了这些现象的含义,并讨论了如何解决它们。

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