A tetravalent manganese ion doped magnesium lithium niobate red fluorescent material and preparation method thereof
A technology of red fluorescence and ion doping, which is applied in the field of red fluorescent materials, can solve the problems such as the unsatisfactory applicability of ion-doped red phosphors, and achieve good thermal quenching resistance, good thermal stability, and excellent performance. Effect
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Embodiment 1
[0037] Select raw materials containing lithium compounds, raw materials containing magnesium compounds, raw materials containing niobium compounds and raw materials containing manganese compounds as starting materials, according to the molar ratio of elements Li: Mg: Nb: Mn = 3: 2: (1 - x): x, respectively Accurately weigh the four raw materials, where x is 0.001, 0.002, 0.004, 0.006, 0.008, 0.01, 0.012, 0.02, 0.04, 0.06, 0.08, 0.1 respectively. Four chemical raw materials of lithium carbonate, magnesium oxide, niobium oxide and manganese dioxide were weighed respectively, and the total weight of the mixture was controlled to be about 20 grams. After 20 grams of the mixture were mixed by ball milling, they were put into a corundum crucible, and then the crucible was put into a high-temperature electric furnace. Precisely control the heating rate, control the decomposition reaction rate of the compound raw materials, prevent the mixture from overflowing from the crucible, and p...
Embodiment 2
[0040] Lithium oxide, magnesium carbonate, niobium carbonate, and manganese carbonate chemicals are selected as starting materials, and the four raw materials are accurately weighed according to the element molar ratio Li:Mg:Nb:Mn = 3:2:(1 - x):x , where 0.001 ≤ x ≤ 0.1. The total weight of the control mixture is about 20 grams. After 20 grams of the mixture were mixed by ball milling, they were put into a corundum crucible, and then the crucible was put into a high-temperature electric furnace. Precisely control the heating rate, control the decomposition reaction rate of the compound raw materials, prevent the mixture from overflowing from the crucible, and pre-fire the sample at 500 ° C for 8 hours. Take out the pre-fired sample, grind and mix it again, put it into a crucible, burn it at 1150°C for 10 hours, and cool it to room temperature with the furnace to prepare a new type of tetravalent manganese ion-doped magnesium lithium niobate (Li 3 Mg 2 NbO 6 :Mn 4+ ) red f...
Embodiment 3
[0042] Lithium nitrate, magnesium chloride, germanium carbonate, and manganese carbonate chemicals are selected as starting materials, and the four raw materials are accurately weighed according to the element molar ratio Li:Mg:Nb:Mn = 3:2:(1-x):x, Wherein 0.001 ≤ x ≤ 0.1, the total weight of the control mixture is about 20 grams. After 20 grams of the mixture were mixed by ball milling, they were put into a corundum crucible, and then the crucible was put into a high-temperature electric furnace. Precisely control the heating rate, control the decomposition reaction rate of the compound raw materials, prevent the mixture from overflowing from the crucible, and pre-fire the sample at 400 ° C for 10 hours. Take out the pre-fired sample, grind and mix it again, put it into a crucible, burn it at 1050 ° C for 15 hours, and cool it to room temperature with the furnace, you can prepare a new type of tetravalent manganese ion doped magnesium lithium niobate (Li 3 Mg 2 NbO 6 :Mn ...
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