Inch-sized high-quality perovskite single crystals by suppressing phase segregation for light-powered integrated circuits

The triple-cation mixed-halide perovskite (FA MA Cs )Pb(I Br ) (FAMACs) is the best composition for thin-film solar cells. Unfortunately, there is no effective method to prepare large single crystals (SCs) for more advanced applications. Here, we report an effective additive strategy to grow 2-inch-...

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Published inScience advances Vol. 7; no. 7
Main Authors Liu, Yucheng, Zhang, Yunxia, Zhu, Xuejie, Yang, Zhou, Ke, Weijun, Feng, Jiangshan, Ren, Xiaodong, Zhao, Kui, Liu, Ming, Kanatzidis, Mercouri G, Liu, Shengzhong Frank
Format Journal Article
LanguageEnglish
Published United States American Association for the Advancement of Science 01.02.2021
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Summary:The triple-cation mixed-halide perovskite (FA MA Cs )Pb(I Br ) (FAMACs) is the best composition for thin-film solar cells. Unfortunately, there is no effective method to prepare large single crystals (SCs) for more advanced applications. Here, we report an effective additive strategy to grow 2-inch-sized high-quality FAMACs SCs. It is found that the judiciously selected reductant [formic acid (FAH)] effectively minimizes iodide oxidation and cation deprotonation responsible for phase segregation. Consequently, the FAMACs SC shows more than fivefold enhancement in carrier lifetimes, high charge mobility, long carrier diffusion distance, as well as superior uniformity and long-term stability, making it possible for us to design high-performance self-powered integrated circuit photodetector. The device exhibits large responsivity, high photoconductive gain, excellent detectivity, and fast response speed; all values are among the highest reported to date for planar-type single-crystalline perovskite photodetectors. Furthermore, an integrated imaging system is fabricated on the basis of 12 × 12 pixelated matrixes of the single-crystal photodetectors.
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ISSN:2375-2548
2375-2548
DOI:10.1126/sciadv.abc8844