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有机和卤化物离子对混合钙钛矿稳定性和光电性能的异常协同作用的原位研究。

Abnormal Synergetic Effect of Organic and Halide Ions on the Stability and Optoelectronic Properties of a Mixed Perovskite via In Situ Characterizations.

机构信息

Department of Electronic Engineering, The Chinese University of Hong Kong, Shatin, New Territories, 999077, Hong Kong.

State Key Laboratory Electronic Thin Film and Integrated Devices, University of Electronic Science and Technology of China, Chengdu, Sichuan, 610054, P. R. China.

出版信息

Adv Mater. 2018 Jul;30(28):e1801562. doi: 10.1002/adma.201801562. Epub 2018 May 23.

Abstract

The mixed cation lead mixed halide perovskite (MLMP) Cs FA PbI Br is one of the most promising candidates for both single-junction and tandem solar cells due to its high efficiency and remarkable stability. However, the composition effect on thermal stability and photovoltaic performances has not yet been comprehensively investigated. Therefore, the interplay between composition, crystal structure, morphology, and optoelectronic properties under heat stress, is systematically elucidated here through a series of in situ characterizations. It is revealed for the first time that the FA and Br release synchronously at first even under mild annealing. This leads to a serious FA- and Br-deficiency issue, with only 88.3% of Br and 90.2% of FA retained after annealing at 100 °C, which significantly magnifies the hysteresis, phase segregation, and instability issues. Finally, a trace amount of FA and Br is introduced onto the post-annealed MLMP surface to compensate for the deficiency through vacancy filling. The degradation lifetime to 80% of the initial efficiency (t ) is improved from 504 to 1056 h and the hysteresis issue is also well resolved. This work highlights the importance of the synergetic composition effect of the organic cation and halide anion on stability and efficiency optimization for long-term applications.

摘要

混合阳离子铅混合卤化物钙钛矿 (MLMP) CsFA PbI Br 由于其高效率和显著的稳定性,是单结和串联太阳能电池的最有前途的候选材料之一。然而,其组成对热稳定性和光伏性能的影响尚未得到全面研究。因此,通过一系列原位表征,在这里系统地阐明了热应力下组成、晶体结构、形态和光电性能之间的相互作用。首次发现,即使在温和退火下,FA 和 Br 也会首先同时释放。这导致了严重的 FA 和 Br 缺乏问题,在 100°C 退火后,Br 和 FA 的保留率分别仅为 88.3%和 90.2%,这显著放大了迟滞、相分离和不稳定性问题。最后,通过空位填充,在退火后的 MLMP 表面引入痕量的 FA 和 Br 来补偿缺陷。降解至初始效率 80%的寿命 (t) 从 504 小时提高到 1056 小时,迟滞问题也得到很好地解决。这项工作强调了有机阳离子和卤化物阴离子的协同组成效应对长期应用的稳定性和效率优化的重要性。

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