Yb3+/Tb3+ co-doped GdPO4 transparent magnetic glass-ceramics for spectral conversion

2016 
Abstract Tb 3+ and Yb 3+ ions co-doped transparent phosphate glass-ceramics containing monoclinic GdPO 4 nanocrystals were successfully synthesized using a conventional high temperature melting quenching method in air atmosphere. The structure and morphology properties were systematically analyzed by recording X-ray diffraction patterns and transmission electron microscopy images, which indicate the GdPO 4 glass-ceramics was well formed. The luminescent properties of the GdPO 4 : Yb 3+ , Tb 3+ were investigated based on excitation, emission spectra and decay curves. All samples exhibited the emission of Tb 3+ ions from 5 D 4 → 7 F J ( J  = 6, 5, 4 and 3) and 5 D 3 → 7 F J ( J  = 6, 5 and 4) under irradiation with ultraviolet and near infrared light. Specially, strong green up-conversion emission of Tb 3+ at 543 nm ( 5 D 4 → 7 F 5 ) is observed. And the decay curves illustrate more efficient UC process in GdPO 4 glass-ceramics rather than precursor glass. Energy transfer from Gd 3+ to Tb 3+ as well as cooperative energy transfer from Yb 3+ pair to Tb 3+ gives a dual mode luminescence. Laser power dependence of up-conversion shows that two-photon process is responsible for the green emission as expected. Additionally, the paramagnetic property of this material was discussed. The hysteresis plot (M−H) analysis results at room temperature indicate their good paramagnetic property. Based on the above results, the block GdPO 4 glass-ceramics have potentials to serve as multifunctional materials applied in laser field materials.
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