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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Halide Heterogeneity Affects Local Charge Carrier Dynamics in Mixed-Ion Lead Perovskite Thin Films
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Halide Heterogeneity Affects Local Charge Carrier Dynamics in Mixed-Ion Lead Perovskite Thin Films

机译:卤化物异质性影响混合离子铅钙钛矿薄膜中的局部电荷载体动力学

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摘要

The mechanism and elemental composition that form the basis for the improved optical and electronic properties in mixed-ion lead halide perovskite solar cells are still not well understood compared to standard methylammonium lead triiodide perovskite devices. Here, we use synchrotron-based X-ray fluorescence to map the composition of perovskite thin films. To get insight into the elemental distribution during film growth, we fabricate films with three different thicknesses. To create a link between the composition and electronic properties, we perform Kelvin probe force microscopy and time-resolved photoluminescence spectroscopy. We find that the elemental composition is highly dependent on the film thickness, in particular, the I/Pb ratio is altered for single grains based on the film thickness. The difference in the I/Pb ratio reveals to be the root cause for the underlying difference in the film lifetime and defect density influencing charge carrier dynamics. Our results provide an in-depth analysis approach combining micro- and nanoscale techniques to shed light onto the fundamental processes, which help to further engineer perovskite thin films and improve device efficiencies.
机译:与标准甲基甲基铅三碘化碘化碘化钙石器件相比,形成混合离子卤化物卤化物钙钛矿太阳能电池中改善光学和电子性质基础的机理和元素组合物。这里,我们使用Synchrotron基X射线荧光来映射钙钛矿薄膜的组成。为了在薄膜生长期间深入了解元素分布,我们制造具有三种不同厚度的薄膜。为了在组合物和电子性质之间创建联系,我们执行Kelvin探针力显微镜和时间分辨的光致发光光谱。我们发现元素组合物高度依赖于膜厚度,特别是基于膜厚度的单晶改变I / PB比。 I / PB比率的差异揭示了薄膜寿命和缺陷密度影响电荷载体动态的根本原因。我们的结果提供了一个深入的分析方法,将微型和纳米级技术与闪光相结合到基本过程中,这有助于进一步工程师培养薄膜并改善装置效率。

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