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混合阳离子钙钛矿晶体中表面缺陷和离子迁移的映射

Mapping Surface-Defect and Ions Migration in Mixed-Cation Perovskite Crystals.

作者信息

Nughays Razan O, Almasabi Khulud, Nematulloev Sarvarkhodzha, Wang Lijie, Bian Tieyuan, Nadinov Issatay, Irziqat Bahaaeddin, Harrison George T, Fatayer Shadi, Yin Jun, Bakr Osman M, Mohammed Omar F

机构信息

Advanced Membranes and Porous Materials Center (AMPM), Division of Physical Science and Engineering, King Abdullah University of Science and Technology, Thuwal, 23955-6900, Kingdom of Saudi Arabia.

KAUST Catalysis Center, Division of Physical Sciences and Engineering, King Abdullah University of Science and Technology, Thuwal, 23955-6900, Kingdom of Saudi Arabia.

出版信息

Adv Sci (Weinh). 2024 Oct;11(40):e2404468. doi: 10.1002/advs.202404468. Epub 2024 Aug 29.

Abstract

Single crystal perovskites have garnered significant attention as potential replacements for existing absorber layer materials. Despite the extensive investigations on their photoinduced charge-carriers dynamics, most of the time-resolved techniques focus on bulk properties, neglecting surface characteristic which plays a crucial role for their optoelectronic performance. Herein, 4D ultrafast scanning electron microscopy (4D-USEM) is utilized to probing the photogenerated carrier transport at the first few nanometers, alongside density functional theory (DFT) to track both defect centers and ions migration. Two compositions of mixed cation are investigated: FAMAPbI and FAMAPbI, interestingly, the former displays a longer lifetime compared to the latter due the presence of a higher surface-defect centers. DFT calculations fully support that revealing samples with higher FA content have a lower energy barrier for iodide ions to migrate from the bulk to top layer, assisting in passivating surface vacancies, and a higher energy diffusion barrier to escape from surface to vacuum, resulting in fewer vacancies and longer-lived hole-electron pairs. These findings manifest the influence of cation selection on charge carrier transport and formation of defects, and emphasize the importance of understanding ion migrations role in controlling surface vacancies to assist engineering high-performance optoelectronic devices based on single crystal perovskites.

摘要

单晶钙钛矿作为现有吸收层材料的潜在替代品已引起广泛关注。尽管对其光生载流子动力学进行了广泛研究,但大多数时间分辨技术都集中在体相性质上,而忽略了对其光电性能起关键作用的表面特性。在此,利用4D超快扫描电子显微镜(4D-USEM)探测最初几纳米内的光生载流子传输,同时结合密度泛函理论(DFT)追踪缺陷中心和离子迁移。研究了两种混合阳离子组成:FAMAPbI和FAMAPbI,有趣的是,由于存在更高的表面缺陷中心,前者的寿命比后者更长。DFT计算充分支持,揭示出具有更高FA含量的样品,碘离子从体相迁移到顶层的能垒较低,有助于钝化表面空位,而从表面逃逸到真空的能量扩散势垒较高,导致空位更少且空穴-电子对寿命更长。这些发现表明了阳离子选择对载流子传输和缺陷形成的影响,并强调了理解离子迁移在控制表面空位以助力基于单晶钙钛矿的高性能光电器件工程中的作用的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1aa6/11516060/e295391b75a2/ADVS-11-2404468-g004.jpg

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