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Surface and Interface Aspects of Organometal Halide Perovskite Materials and Solar Cells

机译:有机金属卤化物钙钛矿材料和太阳能电池的表面和界面方面

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摘要

The current challenges (e.g., stability, hysteresis, etc.) in organometal halide perovskite solar cell research are closely correlated with surfaces and interfaces. For instance, efficient generation of charges, extraction, and transport with minimum recombination through interlayer interfaces is crucial to attain high-efficiency solar cell devices. Furthermore, intralayer interfaces may be present in the form of grain boundaries within a film composed of the same material, for example, a polycrystalline perovskite layer. The adjacent grains may assume different crystal orientations and/or have different chemical compositions, which impacts charge excitation and dynamics and thereby the overall solar cell performance. In this Perspective, we present case studies to demonstrate (1) how surfaces and interfaces can impact material properties and device performance and (2) how these issues can be investigated by surface science techniques, such as scanning probe microscopy, photoelectron spectroscopy, and so forth. We end this Perspective by outlining the future research directions based on the reported results as well as the new trends in the field.
机译:有机金属卤化物钙钛矿太阳能电池研究中的当前挑战(例如,稳定性,滞后性等)与表面和界面密切相关。例如,电荷的有效产生,提取和通过层间界面的最小重组对获得高效太阳能电池设备至关重要。此外,层内界面可以以晶界的形式存在于由相同材料例如多晶钙钛矿层组成的膜内。相邻的晶粒可以采取不同的晶体取向和/或具有不同的化学组成,这影响电荷激发和动力学,从而影响整个太阳能电池的性能。在此“透视图”中,我们通过案例研究来证明(1)表面和界面如何影响材料特性和设备性能,以及(2)如何通过表面科学技术(例如扫描探针显微镜,光电子能谱等)研究这些问题。向前。我们以报告的结果以及该领域的新趋势为基础,概述了未来的研究方向,从而结束了本《观点》。

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