Fluorescent material capable of emitting yellow light under near-ultraviolet excitation, and preparation method and application thereof
A fluorescent material and near-ultraviolet technology, applied in the field of fluorescent materials, can solve the problems of high cost in the preparation process, low stability and luminous efficiency, low color rendering index, etc., achieve pure chromaticity, and the method is safe and controllable , Improve the effect of color rendering index
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Embodiment 1
[0037] According to the chemical formula Ca 4.25 Dy 0.75 Nb 4 Ti 3 o 21 The stoichiometric ratio of each element in, respectively weighed calcium carbonate CaCO 3 : 2.1250 grams; dysprosium oxide Dy 2 o 3 : 0.6995 g; niobium pentoxide Nb 2 o 5 : 2.6580 g; Titanium dioxide TiO 2 : 1.1981 grams are the raw materials for preparation, the raw materials weighed are ground respectively, and mixed uniformly; the mixture obtained is pre-sintered for the first time under air atmosphere, and the pre-sintering temperature is 900 ° C, and the time is 10 hours; the sample after cooling is ground evenly Finally, the second pre-sintering in the air atmosphere, the pre-sintering temperature is 1200 ℃, the pre-sintering time is 1 hour; after the sample is cooled, it is ground and mixed evenly, and finally calcined in the air atmosphere, the calcination temperature is 1400 ℃, and the calcination time is 1 hour, get the trivalent dysprosium ion Dy 3+ Activated yellow phosphor.
[0038...
Embodiment 2
[0044] According to the chemical formula Ca 4.995 Dy 0.005 Nb 4 Ti 3 o 21 The stoichiometric ratio of each element in, respectively weighed calcium chloride CaCl 2 ::2.7722 g; Dy(NO 3 ) 3 ·6H 2 O: 0.0115 g; niobium pentachloride NbCl 5 : 5.4000 g; Titanium dioxide TiO 2 : 1.1981 grams is the raw material of preparation, the raw material that weighs is ground respectively, mixes uniformly; The mixture that obtains is pre-sintered under air atmosphere, and pre-sintering temperature is 1100 ℃, and pre-sintering time is 5 hours; Sintered sample grinds evenly, Calcined in an air atmosphere, the calcination temperature is 1200 ° C, and the calcination time is 15 hours, a trivalent dysprosium ion Dy 3+ Activated yellow phosphor.
[0045] The main structural properties, excitation spectrum, luminescence spectrum and luminescence lifetime spectrum of the sample are similar to those of Example 1.
Embodiment 3
[0047] According to the chemical formula Ca 4 wxya 4 Ti 3 o 21 The stoichiometric ratio of each element in is weighed respectively calcium oxide CaO: 1.1200 grams; dysprosium oxide Dy 2 o 3 : 0.9328 g; niobium pentoxide Nb 2 o 5 : 2.6580 g; Titanium dioxide TiO 2 : 1.1981 g is the raw material for preparation, the raw materials weighed are ground respectively and mixed uniformly; the mixture obtained is pre-sintered in an air atmosphere, the pre-sintering temperature is 1000 ° C, and the pre-sintering time is 8 hours; the sintered sample is ground evenly, Calcining again under air atmosphere, the calcination temperature is 1250°C, and the calcination time is 8 hours to obtain a trivalent dysprosium ion Dy 3+ Activated yellow phosphor.
[0048] The main structural properties, excitation spectrum, luminescence spectrum and luminescence lifetime spectrum of the sample are similar to those of Example 1.
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