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首页> 外文期刊>The Korean journal of chemical engineering >Size-Dependent Luminescent Properties of Hollow and Dense BaMgAl_(10)O_(17): Eu Blue Phosphor Particles Prepared by Spray Pyrolysis
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Size-Dependent Luminescent Properties of Hollow and Dense BaMgAl_(10)O_(17): Eu Blue Phosphor Particles Prepared by Spray Pyrolysis

机译:空心和致密BaMgAl_(10)O_(17):喷雾热解制备的Eu蓝色荧光粉颗粒的尺寸依赖性发光特性

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摘要

Hollow and dense BaMgAl_(10)O_(17): Eu~(2+) (BAM) phosphor particles were synthesized by a spray pyrolysis process and their luminescent properties were investigated under vacuum ultraviolet (VUV) excitation as varying the average particle size. The dependence of the luminescent intensity on the particle size was greatly influenced by the morphology of BAM particles. For the BAM particles with a hollow structure, the luminescent intensity linearly increased with increasing the particle size. However, no significant change in the luminescent intensity was observed for dense particles as the particle size changed. Also, all dense BAM particles had higher photoluminescence intensity than that of the hollow ones regardless of the particle size. The luminescent intensity of BAM phosphor particles prepared by spray pyrolysis was found to have a linear relationship with the crystallite size. Therefore, it was concluded that suppressing the formation of a hollow structure and increasing the crystallite size are needed to obtain high luminous BAM phosphor particles with a spherical shape and fine size of less than 1 μm. On the basis of penetration depth of VUV, a simple relation equation between the particle size and the luminescent intensity was derived and correlated with experimental results in order to interpret the luminescent behavior of BAM phosphor as the particle size changes.
机译:通过喷雾热解合成了空心致密的BaMgAl_(10)O_(17):Eu〜(2+)(BAM)荧光粉颗粒,并在真空紫外(VUV)激发下随平均粒径的变化研究了其发光性能。 BAM颗粒的形态极大地影响了发光强度对颗粒大小的依赖性。对于具有中空结构的BAM颗粒,发光强度随着颗粒尺寸的增加而线性增加。然而,随着粒度的变化,对于致密的颗粒,没有观察到发光强度的显着变化。另外,无论颗粒大小如何,所有致密的BAM颗粒的光致发光强度均高于空心颗粒。发现通过喷雾热解制备的BAM磷光体颗粒的发光强度与微晶尺寸具有线性关系。因此,可以得出结论,需要抑制中空结构的形成并增加微晶尺寸,以获得球形的,尺寸小于1μm的高发光BAM荧光粉颗粒。基于VUV的穿透深度,推导了粒径与发光强度之间的简单关系式,并将其与实验结果相关联,以解释BAM磷光体随粒径变化的发光行为。

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