CaMoO4:Dy3+,Eu3+ phosphors: microwave synthesis, characterization, tunable luminescence properties and energy transfer mechanism

2018 
Abstract A series of Dy 3+ /Eu 3+ co-doped CaMoO 4 phosphors were synthesized by a rapid microwave synthesis method. The samples were investigated using X-ray powder diffraction (XRD), scanning electron microscope (SEM), fourier transform infrared (FT-IR) spectra, diffused reflectance spectra, fluorescence spectrometer, and photoluminescence decay curves, respectively. The XRD results indicated that all the samples were pure tetragonal CaMoO 4 structure. The as-synthesized samples exhibited cubic particles and some irregular polyhedron particles. The big cubic particles were assembled by many closely packed quasi-spherical grains. Under 301 nm excitation, the increase of Eu 3+ content in CaMoO 4 :Dy 3+ ,Eu 3+ led to the enhancement of red emission (613 nm) of Eu 3+ and the decrease of blue and yellow emissions of Dy 3+ , which was possibly due to the efficient energy transfer (ET) from level of Dy 3+ to 5 D 0 level of Eu 3+ through the phonon-aided non-radiative relaxation. The phosphors could generate different color light from yellow-green through yellow and orange-reddish and eventually to red by properly tuning the content of Eu 3+ based on the ET process, which suggested that they might be potentially applied in the fields of lighting and display. Besides, the possible energy transfer mechanism and schematic energy level diagram were discussed in detail.
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