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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Direct assessment of structural order and evidence for stacking faults in layered hybrid perovskite films from X-ray scattering measurements
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Direct assessment of structural order and evidence for stacking faults in layered hybrid perovskite films from X-ray scattering measurements

机译:从X射线散射测量中直接评估结构秩序和用于堆叠分层杂交钙钛矿薄膜的故障的证据

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摘要

Ruddlesden-Popper layered perovskites have emerged as a promising solution for overcoming the moisture instability of three-dimensional hybrid perovskite materials. Given that the optoelectronic properties of these layered perovskites strongly depend on the dimensionality (n) of the phases present, understanding of the microstructure and order in such materials is important. Typically, the dimensionality of phases present is inferred from optical measurements rather than diffraction measurements which are a more direct probe of structural order. Here we use a combination of grazing-incidence transmission wide-angle X-ray scattering and transmission wide-angle X-ray scattering techniques to probe the in-plane microstructure of highly textured Ruddlesden-Popper hybrid perovskite films with a target dimensionality ofn= 4. By being able to resolve the in-plane diffraction peaks corresponding to the periodic repeating of layered phases that are often obscured by the substrate horizon in grazing incidence measurements, we are able to directly characterise structural order in such films. Despite having a target dimensionality ofn= 4, only diffraction peaks corresponding ton= 2, 3 and infinity phases are observed. Observations from X-ray measurements are combined with optical absorption measurements to show that there is increasing structural disorder in low-nphases with increasing dimensionality. Further analysis of peak positions and peak widths in the X-ray scattering patterns indicate that stacking fault defects are the origin of structural disorder in layered perovskite films, with increasing disorder with increasingn. We also present a complete indexing of grazing-incidence wide-angle X-ray scattering patterns of highly textured layered perovskite films and confirm the structurally orderedn= 3 and infinity phases as the dominant crystalline phases in such films. This work provides guidance for the reliable characterisation of structural order and orientation in layered perovskite thin films from X-ray scattering measurements which will assist with assessingn-phase purity and photovoltaic device optimisation.
机译:Ruddlesden-Popper分层佩罗夫斯基特作为克服三维杂交钙钛矿材料的水分不稳定的有希望的解决方案。鉴于这些层状钙钛矿的光电性质强烈地取决于存在的相位的维度(N),理解这些材料中的微观结构和顺序是重要的。通常,从光学测量中推断出存在的相位的维度,而不是衍射测量,这是一种更直接的结构阶探针。在这里,我们使用掠入式发射广角X射线散射和传输广角X射线散射技术的组合来探测高度纹理的鲁德勒斯 - 普勒杂交钙晶膜的平面内微结构,其目标维度为Nn = 4 。通过能够解析对应于通过基质地平线雾化的分层相的周期性重复的平面内衍射峰,我们能够直接在这种薄膜中表征结构顺序。尽管具有Nn = 4的目标维度,但仅观察到相应的衍射峰值= 2,3和无限相。 X射线测量的观察与光学吸收测量结合,表明,随着维度的增加,低N蛋白酶的结构障碍增加。进一步分析X射线散射图案中的峰值位置和峰宽表明堆叠故障缺陷是层状钙钛矿薄膜中结构障碍的起源,随着越来越多的紊乱而增加。我们还提出了一种完全索引的放牧发射广角X射线散射图案,其高度纹理的层状钙钛矿膜,并确认在这种薄膜中的主要结晶相中的结构序列= 3和无限相位。这项工作提供了来自X射线散射测量的层状钙钛矿薄膜中结构秩序和取向的可靠性表征的指导,这将有助于评估纯度和光伏器件优化。

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