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Environmentally Friendly Synthesis of Near-Unity UV/Violet-Emitting Cerium-Based Metal Halides with Reversible
Dongyang Zhu1, Weilong Qin1, Xu Chen1
1Key Laboratory of Materials Physics of Ministry of Education, School of Physics and Laboratory of Zhongyuan Light, Zhengzhou University, Daxue Road 75, Zhengzhou 450052, China.
Abstract:
Ultraviolet (UV) and violet luminescent materials with high efficiency and facile synthesis have attracted significant attention for photoelectric applications. However, conventional preparation routes are hindered by complicated processes, harsh conditions, and toxic solvents, making scalable production challenging. Herein, we report a green, low-cost, and scalable solution-phase synthesis of Cs3CeCl6·3H2O and Cs3CeCl6, which exhibit photoluminescence quantum yields (PLQY) of 93.54% and 91.82%, respectively. Notably, Cs3CeCl6·3H2O shows dual emission peaks at 334 and 356 nm, representing one of the shortest emitting metal halide perovskites reported. Moreover, reversible phase transitions between the hydrated and anhydrous phases can be triggered by thermal, solvent, and moisture stimuli. Based on this characteristic, we demonstrate a multilevel information encryption system. This work not only introduces a new family of highly efficient UV-violet phosphors but also offers novel design strategies for smart luminescent materials in information security and anticounterfeiting applications.
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