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绘制有机-无机卤化物钙钛矿中光致离子迁移的途径。

Mapping the pathways of photo-induced ion migration in organic-inorganic hybrid halide perovskites.

机构信息

Department of Mechanical Engineering, University of California, Santa Barbara, CA, 93106, USA.

Department of Mechanical Engineering, Seoul National University, Seoul, 08826, Republic of Korea.

出版信息

Nat Commun. 2023 Apr 3;14(1):1846. doi: 10.1038/s41467-023-37486-w.

Abstract

Organic-inorganic hybrid perovskites exhibiting exceptional photovoltaic and optoelectronic properties are of fundamental and practical interest, owing to their tunability and low manufacturing cost. For practical applications, however, challenges such as material instability and the photocurrent hysteresis occurring in perovskite solar cells under light exposure need to be understood and addressed. While extensive investigations have suggested that ion migration is a plausible origin of these detrimental effects, detailed understanding of the ion migration pathways remains elusive. Here, we report the characterization of photo-induced ion migration in perovskites using in situ laser illumination inside a scanning electron microscope, coupled with secondary electron imaging, energy-dispersive X-ray spectroscopy and cathodoluminescence with varying primary electron energies. Using methylammonium lead iodide and formamidinium lead iodide as model systems, we observed photo-induced long-range migration of halide ions over hundreds of micrometers and elucidated the transport pathways of various ions both near the surface and inside the bulk of the samples, including a surprising finding of the vertical migration of lead ions. Our study provides insights into ion migration processes in perovskites that can aid perovskite material design and processing in future applications.

摘要

具有优异光电性能的有机-无机杂化钙钛矿,由于其可调谐性和低成本制造,引起了人们的极大兴趣。然而,对于实际应用,需要理解和解决钙钛矿太阳能电池在光照下出现的材料不稳定性和光电流滞后等挑战。尽管广泛的研究表明离子迁移是这些不利影响的一个合理起源,但对离子迁移途径的详细了解仍然难以捉摸。在这里,我们报告了使用原位激光照明在扫描电子显微镜内,结合二次电子成像、能量色散 X 射线光谱和具有不同初级电子能量的阴极发光,对钙钛矿中的光致离子迁移进行的表征。使用甲脒碘化铅和碘化甲脒作为模型系统,我们观察到卤化物离子在数百微米范围内的光致远程迁移,并阐明了样品表面和内部各种离子的传输途径,包括一个令人惊讶的发现,即铅离子的垂直迁移。我们的研究为钙钛矿中的离子迁移过程提供了深入的了解,这有助于未来应用中钙钛矿材料的设计和处理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3042/10070404/65e4786481fd/41467_2023_37486_Fig1_HTML.jpg

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