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Formation of CsPbCl3 Cubes and Edge-Truncated Cuboids at Room Temperature
期刊文章

Formation of CsPbCl3 Cubes and Edge-Truncated Cuboids at Room Temperature

Yun-Wen Peng, Chia-Peng Wang, Gautam Kumar, Pei-Lun Hsieh, Chia-Min HsiehMichael H. Huang
ACS Sustainable Chemistry and Engineering, 卷.10(4), 頁碼.1578-1584
01/2022

摘要

Cesium lead chloride Crystal shape control Cuboids Didecyldimethylammonium chloride Perovskites Photoluminescence Tetragonal crystal phase Chemistry (all) Environmental Chemistry Chemical Engineering (all) Renewable Energy Sustainability and the Environment
In contrast to the normal formation of cubic metal halide perovskite nanocrystals, CsPbCl 3 cubes and edge-truncated cuboids have been synthesized by simply mixing CsCl, PbCl 2 , and sodium dodecyl sulfate (SDS) in dimethyl sulfoxide (DMSO) at room temperature and transferring a small volume of the mixture to toluene to form a precipitate. The tetragonal-phased CsPbCl 3 cubes and some rectangular blocks have square and rectangular {100}/{001} faces, while the cuboids have additional {101}/{110} edges. Variation in the amount of PbCl 2 transforms cubes to edge-truncated cuboids. Their absorption and emission band positions are nearly identical at 413–416 nm. Despite having relatively large sizes, the CsPbCl 3 cubes and edge-truncated cuboids display photoluminescence quantum yields of 6.9 and 2.9%, respectively. Remarkably, adding didecyldimethylammonium chloride (DDAC) surfactant to the reaction mixture leads to a 2–4.6-fold enhancement in the emission intensity. It is envisioned that other cesium lead halide crystals of tunable shapes can be synthesized by using the green reaction conditions.

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