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Unravelling the role of vacancies in lead halide perovskite through electrical switching of photoluminescence

机译:通过光致发光的电开关揭示空位在卤化钙钛矿中的作用

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摘要

We address the behavior in which a bias voltage can be used to switch on and off the photoluminescence of a planar film of methylammonium lead triiodide perovskite (MAPbI3) semiconductor with lateral symmetric electrodes. It is observed that a dark region advances from the positive electrode at a slow velocity of order of 10 μm s–1. Here we explain the existence of the sharp front by a drift of ionic vacancies limited by local saturation, that induce defects and drastically reduce the radiative recombination rate in the film. The model accounts for the time dependence of electrical current due to the ion-induced doping modification, that changes local electron and hole concentration with the drift of vacancies. The analysis of current dependence on time leads to a direct determination of the diffusion coefficient of iodine vacancies and provides detailed information of ionic effects over the electrooptical properties of hybrid perovskite materials.
机译:我们解决了一种行为,在该行为中,可以使用偏置电压来打开和关闭带有侧向对称电极的甲基铵三碘化钙钛矿(MAPbI3)半导体平面膜的光致发光。可以看到,从正极以10μms –1 的慢速向黑暗区域发展。在这里,我们通过局部饱和度限制的离子空位漂移来解释尖锐前沿的存在,这些离子空位会引起缺陷并大大降低薄膜中的辐射复合率。该模型考虑了由于离子诱导的掺杂修饰而引起的电流的时间依赖性,该修饰会随空位的漂移而改变局部电子和空穴浓度。电流对时间的依赖性分析可以直接确定碘空位的扩散系数,并提供有关钙钛矿杂化材料电光性能的离子效应的详细信息。

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