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用于太阳能电池的混合离子钙钛矿材料中的部分可逆光致化学变化。

Partially Reversible Photoinduced Chemical Changes in a Mixed-Ion Perovskite Material for Solar Cells.

机构信息

Division of Molecular and Condensed Matter Physics, Department of Physics and Astronomy, Uppsala University , P.O. Box 516, 751 20 Uppsala, Sweden.

Uppsala-Berlin Joint Laboratory on Next Generation Photoelectron Spectroscopy , Albert-Einstein-Str. 15, 12489 Berlin, Germany.

出版信息

ACS Appl Mater Interfaces. 2017 Oct 11;9(40):34970-34978. doi: 10.1021/acsami.7b10643. Epub 2017 Sep 29.

Abstract

Metal halide perovskites have emerged as materials of high interest for solar energy-to-electricity conversion, and in particular, the use of mixed-ion structures has led to high power conversion efficiencies and improved stability. For this reason, it is important to develop means to obtain atomic level understanding of the photoinduced behavior of these materials including processes such as photoinduced phase separation and ion migration. In this paper, we implement a new methodology combining visible laser illumination of a mixed-ion perovskite ((FAPbI)(MAPbBr)) with the element specificity and chemical sensitivity of core-level photoelectron spectroscopy. By carrying out measurements at a synchrotron beamline optimized for low X-ray fluxes, we are able to avoid sample changes due to X-ray illumination and are therefore able to monitor what sample changes are induced by visible illumination only. We find that laser illumination causes partially reversible chemistry in the surface region, including enrichment of bromide at the surface, which could be related to a phase separation into bromide- and iodide-rich phases. We also observe a partially reversible formation of metallic lead in the perovskite structure. These processes occur on the time scale of minutes during illumination. The presented methodology has a large potential for understanding light-induced chemistry in photoactive materials and could specifically be extended to systematically study the impact of morphology and composition on the photostability of metal halide perovskites.

摘要

金属卤化物钙钛矿作为太阳能-电能转换的高关注材料已经崭露头角,特别是混合离子结构的应用导致了高功率转换效率和提高的稳定性。出于这个原因,重要的是要开发手段,以获得对这些材料的光致行为的原子水平的理解,包括光致相分离和离子迁移等过程。在本文中,我们实施了一种新的方法,将可见激光照射与混合离子钙钛矿((FAPbI)(MAPbBr))的芯层光电子能谱的元素特异性和化学敏感性结合起来。通过在优化用于低 X 射线通量的同步加速器光束线上进行测量,我们能够避免由于 X 射线照射引起的样品变化,因此能够仅监测可见光照亮引起的样品变化。我们发现激光照射会导致表面区域部分可逆的化学反应,包括表面溴化物的富集,这可能与相分离成富含溴化物和碘化物的相有关。我们还观察到钙钛矿结构中部分可逆地形成了金属铅。这些过程在光照期间几分钟的时间尺度内发生。所提出的方法具有理解光活性材料中光致化学的巨大潜力,并且特别可以扩展到系统地研究形态和组成对金属卤化物钙钛矿光稳定性的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5606/5663419/a0e4d505f42a/am-2017-10643k_0001.jpg

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