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首页> 外文期刊>ACS applied materials & interfaces >Grain Boundaries Act as Solid Walls for Charge Carrier Diffusion in Large Crystal MAPI Thin Films
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Grain Boundaries Act as Solid Walls for Charge Carrier Diffusion in Large Crystal MAPI Thin Films

机译:谷物边界用作大晶体薄膜中的电荷载体扩散的固体壁

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摘要

Micro- and nanocrystalline methylammonium lead iodide (MAPI)-based thin-film solar cells today reach power conversion efficiencies of over 20%. We investigate the impact of grain boundaries on charge carrier transport in large crystal MAPI thin films using time-resolved photoluminescence (PL) microscopy and numerical model calculations. Crystal sizes in the range of several tens of micrometers allow for the spatially and time resolved study of boundary effects. Whereas long-ranged diffusive charge carrier transport is observed within single crystals, no detectable diffusive transport occurs across grain boundaries. The observed PL transients are found to crucially depend on the microscopic geometry of the crystal and the point of observation. In particular, spatially restricted diffusion of charge carriers leads to slower PL decay near crystal edges as compared to the crystal center. In contrast to many reports in the literature, our experimental results show no quenching or additional loss channels due to grain boundaries for the studied material, which thus do not negatively affect the performance of the derived thin-film devices.
机译:微型和纳米晶体甲基铅碘化物(MAPI)基于薄膜太阳能电池,达到超过20%的功率转换效率。我们使用时间分辨的光致发光(PL)显微镜和数值模型计算,研究大晶体MAPI薄膜电荷载流子晶界对电荷载流子的影响。晶体尺寸在几十微米的范围内,允许对边界效应的空间和时间解决的研究。然而,在单晶内观察到长距离的漫射载流量传输,而晶界不会发生可检测的扩散运输。发现观察到的PL瞬变至关重要地取决于晶体的微观几何形状和观察点。特别地,与晶体中心相比,电荷载体的空间限制扩散导致较慢的PL衰减靠近晶体边缘。与文献中的许多报道相比,我们的实验结果由于所研究的材料的晶界而没有淬火或额外的损失通道,因此不会对衍生的薄膜装置的性能产生负面影响。

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