Article ID Journal Published Year Pages File Type
1495130 Optical Materials 2013 5 Pages PDF
Abstract

The principle of color conversion process was used to generate red long-lasting phosphorescence (LLP) using SrAl2O4:Eu, Dy (SAO) as primary light source and rhodamine B encapsulated mesoporous silica nanoparticles (MCM-R) as effective color conversion agent. The phosphorescence spectra of MCM-R/SAO hybrid samples show green peaks from 425 nm to 550 nm and red peaks from 550 nm to 700 nm, which can be attributed to the phosphorescence of SAO and the fluorescence of MCM-R, respectively. The phosphorescence color can be adjusted from green to red by changing the mass ratio of MCM-R/SAO. When the mass ratio of MCM-R/SAO increases from 0.05 to 1.5, a blue shift for the green peak and a red shift for the red peak of the phosphorescence spectra can be observed and the intensity of the red emission peak increase relatively towards the green one. The phosphorescence decay curves show that MCM-R and SAO have similar decay dynamics and the MCM-R can inherit the LLP properties of SAO. The phosphorescence decay spectra indicate that the MCM-R/SAO hybrid can retain constant and steady visual phosphorescence color. The red phosphorescence can be seen in the dark with naked eyes for more than 5 h. So, the red LLP can be successfully achieved based on the principle of color conversion process.

Graphical abstractRed long-lasting phosphorescence is achieved based on the principal of color conversion process using SrAl2O4:Eu, Dy (SAO) as a long-lasting phosphorescence light source and rhodamine B encapsulated mesoporous silica nanoparticles (MCM-R) as color conversion agent. The phosphorescence color can be adjusted from green to red by changing the mass ratio of MCM-R/SAO.Figure optionsDownload full-size imageDownload high-quality image ( K)Download as PowerPoint slideHighlights► The principal of color conversion process was used to generate red long-lasting phosphorescence (LLP). ► SrAl2O4:Eu, Dy (SAO) was used as LLP light source. ► Rhodamine B encapsulated mesoporous silica nanoparticles (MCM-R) was used as color conversionagent. ► The phosphorescence color can be adjusted from green to red by changing the mass ratio of MCM-R/SAO. ► MCM-R can inherit the long-lasting phosphorescence properties of SAO.

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Physical Sciences and Engineering Materials Science Ceramics and Composites
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