A Dual Strategy to Prepare CsPbBr3@glass with a High PLQY and Ultrastability: Combining Controllable Crystallization and Surface Modification

Author:

Zhu Wenying1,Cheng Shun1,Mei Eenrou1,He Ye1,Yang Jiapeng1,Liu Ruowang1,Liang Xiaojuan1ORCID,Xiang Weidong1

Affiliation:

1. College of Chemistry and Materials Engineering Wenzhou University Wenzhou 325035 China

Abstract

AbstractAll‐inorganic perovskite quantum dots (PQDs) are widely applied in photoelectronics because of their high luminous efficiency. However, PQDs have poor stability, which hinders their practical applications. In this study, controllable crystallization of PQDs is achieved by adding Al2O3 to alter the glass network. Next, Na2CO3 (aq) washing‐heating treatment is used to improve the protective mechanism. Owing to this dual strategy, the prepared CsPbBr3@glass exhibits a high photoluminescence quantum yield (PLQY > 95%) and excellent stability. In a 1000 h accelerated aging experiment, the luminous intensity remains above 96% of the initial intensity. The luminescence intensity shows almost no change after soaking in water for 20 weeks. Finally, the CsPbBr3@CsPbBr1I2@PET light‐conversion film is prepared by the sandwich method. Its color gamut covers 138% of the NTSC 1953 and 102% of the Rec. 2020. This CsPbBr3@glass with a high PLQY and ultrastability will broaden the scope of perovskite materials in displays.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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