Dual-emissions with energy transfer from the phosphor Ca14Al10Zn6O35:Bi3+,Eu3+ for application in agricultural lighting

2017 
Abstract Bi 3+ and Eu 3+ co-activated Ca 14 Al 10 Zn 6 O 35 (CAZO) phosphors were synthesized by a solid state sintering method. X-ray diffraction (XRD), scan electron microscopy (SEM), photoluminescence (PL) and decay studies were employed to characterize the as-prepared phosphor samples. A dual-emission composed of blue and red luminescence is observed in Bi 3+ and Eu 3+ co-activated CAZO phosphors, which has potential application in artificial lighting to improve the plant growth. The highest intensities of emissions of CAZO:Bi 3+ and CAZO:Bi 3+ ,Eu 3+ are obtained at the concentration of Bi 3+ at 0.5 mol% and 1.0 mol%, respectively. The overall luminescence color can be tunable from blue, purple, to red by changing the molecular ratio of Bi 3+ to Eu 3+ . The mechanism of energy transfer from Bi 3+ to Eu 3+ has been demonstrated by decay times of Bi 3+ emissions which are varied with Eu 3+ content doped in host lattice. The efficiency of energy transfer from Bi 3+ to Eu 3+ increases with the increase of Eu 3+ concentration, which leads to that the internal quantum yields (QY) of both Bi 3+ and Eu 3+ co-activated CAZO are higher than either of Bi 3+ or Eu 3+ singly doped phosphor.
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