Highly Stable And Efficient Pure Green Up-Conversion Emission Of Rod-Like Beta-Nagdf4:Yb3+,Ho3+ Submicro-Crystals Via Ion-Exchange For Fluorescent Labeling

JOURNAL OF MATERIALS CHEMISTRY C(2018)

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摘要
High purity green up-conversion (UC) materials have wide applications in fluorescent labeling, plastic recycling and displays, etc. However, Yb3+/Er3+-based UC materials exhibit poor color purity of green light, and their output color is normally unstable under a variable excitation power density, which hinders their application in the aforementioned areas. Herein, we report the highly stable and efficient pure green UC of rod-like beta-NaGdF4:Yb3+, Ho3+ submicro-crystals synthesized via a newly developed ion-exchange modified (IEM) method. IEM-derived NaGdF4:Yb3+, Ho3+ monodisperse submicro-crystals present not only a high-purity green output color (due to the large intensity ratio of green to red, I-Green/I-Red approximate to 5) but also excellent color stability under varying conditions, such as excitation power density and doping concentration of Yb3+/Ho3+. More importantly, IEM arouses an enormously enhanced UC emission intensity of similar to 3700-fold that of the precursor crystals (PC). The UC emission intensity of IEM beta-NaGdF4:Yb3+, Ho3+ is similar to 4 times stronger than that of its high temperature annealing (HTA) counterpart. The emission intensity of the single green band is similar to 40% stronger than that of the IEM beta-NaGdF4:20% Yb3+, 2% Er3+ submicro-crystals. A proof-of-concept fluorescent labeling of clover patterns (15 x 12 mm) printed from NaGdF4:Yb3+, Ho3+ ink with stable and high purity green fluorescence is demonstrated under excitation with various power densities.
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