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Impact of Structural Dynamics on the Optical Properties of Methylammonium Lead Iodide Perovskites

机译:结构动力学对甲基铵碘化铅钙钛矿的光学性能的影响

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摘要

Organolead halide perovskites have attracted a lot of attention over the recent years mostly due to their bright prospective application in photovoltaic devices. For further development, characterization of their physical properties plays a seminal role in order to gain an in-depth understanding of these mid-bandgap ionic semiconductors. Their unique optical and electronic properties are a result of their characteristic electronic structure. Temperature dependent optical spectroscopy, i.e., absorption and photoluminescence (PL) characterization, gives access to their electronic nature that draws strong correlations to their structural properties. Those properties include static and dynamic disorder, and defects or phase transitions, which will be demonstrated in the first part of this research view. The second part focuses on ion migration in these hybrid semiconductors, which can strongly affect the slow dynamics of optical properties. Light-activated ions result in a number of complex processes that can lead to an increase, but also a decrease of PL intensity, or induce PL intermittency. Parameters like light intensity, crystal quality, and defect density all influence these processes, and ultimately the electronic nature of the hybrid perovskites. We will briefly summarize current achievements and point out challenges for upcoming research.
机译:近年来,有机油卤化物钙钛矿吸引了很多关注,这主要是由于它们在光伏器件中的广阔前景。为了进一步发展,其物理性质的表征起着至关重要的作用,以便深入了解这些中带隙离子半导体。它们独特的光学和电子特性是其独特的电子结构的结果。温度相关的光谱学,即吸收和光致发光(PL)表征,使人们可以利用其电子性质,从而对其结构特性产生强烈的相关性。这些特性包括静态和动态无序以及缺陷或相变,这将在本研究视图的第一部分中得到证明。第二部分关注这些混合半导体中的离子迁移,这会严重影响光学性能的缓慢变化。光活化离子导致许多复杂的过程,这些过程可能导致PL强度增加,但也会降低,或导致PL间歇性。诸如光强度,晶体质量和缺陷密度之类的参数都会影响这些过程,并最终影响杂化钙钛矿的电子性质。我们将简要总结当前的成就,并指出未来研究的挑战。

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