首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Robust CsPbX3 (X = Cl, Br, and I) perovskite quantum dot embedded glasses: nanocrystallization, improved stability and visible full-spectral tunable emissions
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Robust CsPbX3 (X = Cl, Br, and I) perovskite quantum dot embedded glasses: nanocrystallization, improved stability and visible full-spectral tunable emissions

机译:鲁棒CSPBX3(X = CL,BR和I)Perovskite量子点嵌入眼镜:纳米晶体化,提高稳定性和可见的全光谱可调排放

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摘要

Currently, all inorganic perovskite quantum dots (QDs) of cesium lead halides (CsPbX3, X = Cl, Br, and I) have been mainly fabricated using wet chemical methods. Unfortunately, applications of perovskite QDs have been limited due to their poor stability. In the present work, the in situ growth of whole-family CsPbX3 (X = Cl, Br, and I) perovskite QDs in Zn-P-B-Sb based oxide glass via a glass crystallization strategy is reported. The as-prepared CsPbX3 QDs@glass nanocomposites exhibit typical excitonic recombination emissions and superior chemical stability benefited from the protection of the robust inorganic glass matrix. Through modifying the molar ratio of halide sources in glass, multi-color tunable emissions in the entire visible spectral range of 400-750 nm are achieved. As a result, light-emitting diode devices can be constructed by coupling blue-emissive CsPbBrCl2, green-emissive CsPbBr3 and red-emissive CsPbBr0.5I2.5 QDs@glass powders with a commercial ultraviolet chip, yielding bright white light luminescence with excellent optoelectronic performance.
机译:目前,所有的无机钙钛矿量子点(QDS)的铅卤化铯(CSPBX3,X = Cl,Br和I)主要是使用湿化学方法制造的。遗憾的是,由于其稳定性差,佩洛斯库特QD的应用受到限制。在本作工作中,通过玻璃结晶策略报道,通过玻璃结晶策略的Zn-P-B-Sb氧化物玻璃中全族CSPBX3(X = Cl,Br和I)的原位生长。 AS制备的CSPBX3 QDS玻璃纳米复合材料表现出典型的兴趣重组排放和优异的化学稳定性,受益于鲁棒无机玻璃基质的保护。通过改变玻璃中卤化物源的摩尔比,实现了400-750nm的整个可见光光谱范围内的多色可调排放。结果,发光二极管器件可以通过耦合蓝色发射CSPBBR2,绿色发射CSPBBR3和红色发射CSPBBR0.5i2.5 QDS玻璃粉末来构造,具有商业紫外线芯片,产生明亮的白光发光,具有优异的光电子表现。

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