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首页> 外文期刊>ACS applied materials & interfaces >Understanding the Passivation Mechanisms and Opto-Electronic Spectral Response in Methylammonium Lead Halide Perovskite Single Crystals
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Understanding the Passivation Mechanisms and Opto-Electronic Spectral Response in Methylammonium Lead Halide Perovskite Single Crystals

机译:了解甲基卤代锂卤化锂钙钛矿单晶中的钝化机制和光电谱反应

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摘要

Attaining control over the surface traps in halide perovskites is critical for the tunability of ultimate device characteristics. Here, we present a study on the modulation of photophysical properties, surface traps, and recombination in MAPbI(3) single crystals (MSCs) with methylamine (MA) vapor surface treatment. Transient photoluminescence spectroscopy in conjunction with density functional theory calculations reveals that nonradiative recombination related to Pb2+ becomes mitigated after MA vaporing while radiative recombination via bimolecular path tends to increase, which originates from the passivation of Pb ions with the Lewis base nitrogen in MA. In contrast to the broad photoresponse in the pristine MSC photodiodes, application of MA surface treatments leads to a spectral narrowing effect (SNE) in MSCs with the response peak width 40 nm. On the basis of the examined photon-cycling effect with MA treatment that indicates a reduction of exciton diffusion into the interior region of MSCs, we attempt to propose an operation mechanism for the SNE which can be related to the overall stronger surface recombination and resulting severe photocarrier losses, such that the charge collection and quantum efficiency from the above-band gap absorption decrease. This work provides a facile approach with chemical means to tune the surface properties and eventual spectral selectivity in MSCs that are promising for photon-detection device applications.
机译:在卤化物蠕动中的表面陷阱对表面陷阱进行控制对于极限器件特性的可调性至关重要。在这里,我们展示了用甲胺(MA)蒸气表面处理MapBi(3)单晶(MSCs)中的光物理性质,表面捕集物和重组的调节研究。结合密度官能理论的瞬时光致发光光谱揭示了与Pb2 +相关的非相互作用重组在MA蒸发后变化,而通过双分子路径辐射重组趋于增加,这源自Pb离子与Lewis碱在MA中的钝化磷酸盐。与原始MSC光电二极管中的宽光响应相反,MA表面处理的应用导致MSC中的光谱变窄效果(SNE),响应峰宽度≤40nm。基于所检测的光子循环效果与MA处理,表明将激子扩散的减少到MSCs的内部区域,我们试图提出一种可以与整体更强的表面重组有关的SNE的操作机制,并导致严重。光载波损耗,使得电荷收集和量子效率从上面带隙吸收降低。这项工作提供了一种具有化学方法的容易方法,可以调整对光子检测装置应用有前途的MSC中的表面特性和最终光谱选择性。

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