卤化物
光致发光
材料科学
金属
相变
光电子学
相(物质)
无机化学
工程物理
冶金
化学
物理
有机化学
作者
Wei Wang,Chengdong Liu,Xiang‐Bin Han,Chang‐Qing Jing,Chao‐Yang Chai,Chang‐Chun Fan,Ming‐Liang Jin,Jing‐Meng Zhang,Wen Zhang
出处
期刊:ACS materials letters
[American Chemical Society]
日期:2023-12-14
卷期号:6 (1): 203-211
被引量:9
标识
DOI:10.1021/acsmaterialslett.3c01296
摘要
Phase-change materials (PCMs) have spurred intensive studies for information storage owing to huge and drastic changes in physical properties (i.e., optical and resistivity) during the phase transitions between crystalline-amorphous and crystalline-melting-glassy states. However, limited switching properties and materials greatly hinder their development and applications. Herein, we report a pair of hybrid metal halides (R/S-2-HMM)3SbCl6 (2-HMM = 2-(hydroxymethyl)morpholine cation) as model compounds of a new class of photoluminescent PCMs. They undergo a stable melt process and become amorphous glass by melt-quenching. The crystalline phase exhibits near-unity yellow photoluminescence with a 95% quantum yield due to the radiative recombination of self-trapped excitons in the excited state of [SbCl6]3– octahedra. The glass phase exhibits an orange emission with a very low quantum yield and good transparency in the 400–800 nm range. Drastic photoluminescence switching via the crystal-glass transition is exploited for rewritable phase-change memory, as exemplified by a 4 × 4 array model device. The robust crystal–liquid–glass phase changes in hybrid metal halides and drastic photoluminescence switching open a new avenue to PCMs for further applications in remote information storage, sensing, and display.
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