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Efficient Blue to Red Afterglow Tuning in a Binary Nanocomposite Plastic Film

机译:二元纳米复合塑料薄膜中的高效蓝色至红色余辉调整

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摘要

Colorful spectra are important for the diverse applications of persistent phosphors. A color conversion concept is developed to obtain abundant persistent luminescence color by mining capacities of known persistent phosphors with the most efficient persistent properties. Here, SiO2/Sr2MgSi2O7:Eu,Dy nanoparticles are chosen as a blue persistent luminescence donor nanophosphor, while ultrafine CaAlSiN3:Eu is utilized as a red conversion phosphor to tune the persistent luminescence spectra from blue to red. The red afterglow emission can persist for more than 5 h. The decay of the red afterglow follows nearly the same kinetics as that of the blue one. Continuous color tuning can be successfully obtained by simply changing the mass ratio of the donor/conversion phosphor pair. This color conversion strategy may be significant in indicating numerous persistent/conversion nanocomposites or nanostructures and advance the development of persistent phosphors in diverse fields which need colorful spectral properties.
机译:彩色光谱对于持久性磷光体的各种应用很重要。发展了颜色转换概念,以通过挖掘具有最有效持久性的已知持久性磷光体的能力来获得丰富的持久发光色。在这里,SiO2 / Sr2MgSi2O7:Eu,Dy纳米粒子被选作蓝色持久发光供体纳米磷光体,而超细CaAlSiN3:Eu被用作红色转换磷光体,以将持久发光光谱从蓝色调整为红色。红色余辉发射可以持续超过5小时。红色余辉的衰减遵循与蓝色相同的动力学。只需更改施主/转换磷光体对的质量比,即可成功获得连续的颜色调整。这种颜色转换策略在指示众多持久/转换纳米复合材料或纳米结构方面可能意义重大,并在需要彩色光谱特性的各种领域推动了持久荧光粉的发展。

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