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Diffusing Mn4+ into Dy3+ Doped SrAl2O4 for Full-Color Tunable Emissions

Bao‐gai Zhai, Meng Meng Chen, Yuan Ming Huang

2022Materials12 citationsDOIOpen Access PDF

Abstract

Dy3+ and Mn4+ codoped SrAl2O4 (SrAl2O4:Dy3+,Mn4+) phosphors were obtained by diffusing Mn4+ ions into Dy3+-doped SrAl2O4 via the constant-source diffusion technique. The influences of diffusion temperature and diffusion time on the emissions of SrAl2O4:Dy3+,Mn4+ were investigated. It was found that: (i) efficient red emission peaking at 651 nm can be readily achieved for SrAl2O4:Dy3+ by simply diffusing Mn4+ into SrAl2O4:Dy3+ at 800 °C and above; (ii) the red emission of Mn4+ becomes dominant over the characteristic emissions of Dy3+ when the diffusion temperature is 900 °C or higher; and (iii) the intensity of the red emission of SrAl2O4:Dy3+,Mn4+ is far more sensitive to diffusion temperature than to diffusion time. Our results have demonstrated that full-color tunable emissions can be realized for SrAl2O4:Dy3+, Mn4+ by tuning the parameters of diffusion temperature and diffusion time, which opens up a space for realizing easy color control of Dy3+-doped inorganic materials.

Topics & Concepts

DopingMaterials scienceAnalytical Chemistry (journal)OptoelectronicsEnvironmental chemistryChemistryLuminescence Properties of Advanced MaterialsPigment Synthesis and PropertiesGlass properties and applications
Diffusing Mn4+ into Dy3+ Doped SrAl2O4 for Full-Color Tunable Emissions | Litcius