Single-matrix near ultraviolet excited light color adjustable fluorescent powder and preparation method thereof
A near-ultraviolet and excitation light technology, which is applied in the direction of luminescent materials, chemical instruments and methods, and sustainable buildings, can solve the problems of insufficient mixing uniformity, light color stability, poor color rendering of light sources, and high price, and achieves the preparation method Simple and feasible, high luminous intensity, low price effect
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0019] (1) According to the molar ratio of Ba:Mg:Si:Eu:Ga=0.99:1.99:2:0.01:0.01, weigh BaO, 4MgCO 3 ·Mg(OH) 2 ·5H 2 O, SiO 2 、Eu 2 o 3 , Ga 2 o 3 , and then mix well;
[0020] (2) Put the mixed material obtained in step (1) into a crucible and pre-fire it at 850°C, keep it warm for 6 hours, and cool it naturally with the furnace temperature;
[0021] (3) Grind the mixed material after pre-burning in step (2) again and place it in reducing gas H 2 +N 2 After holding at 1230℃ for 10 hours, cool naturally with the furnace temperature, and after grinding, the silicate white phosphor Ba which is co-doped with europium ions and gallium ions 0.99 Eu 0.01 Mg 1.99 Ga 0.01 Si 2 o 7 .
Embodiment 2
[0023] (1) According to the molar ratio of Ba:Mg:Si:Eu:Ga=0.98:1.98:2:0.02:0.02, weigh BaO, 4MgCO 3 ·Mg(OH) 2 ·5H 2 O, SiO 2 、Eu 2 o 3 , Ga 2 o 3 , and then mix well;
[0024] (2) Put the mixed material obtained in step (1) into a crucible and pre-fire it at 600°C, keep it warm for 10 hours, and cool it naturally with the furnace temperature;
[0025] (3) Grind the pre-calcined mixed material in step (2) again and put it under reducing gas CO, keep it at 1230°C for 10 hours, then cool it naturally with the furnace temperature, and get co-doped with europium ions and gallium ions after grinding Silicate white phosphor Ba 0.98 Eu 0.02 Mg 1.98 Ga 0.02 Si 2 o 7 .
Embodiment 3
[0027] (1) According to the molar ratio of Ba:Mg:Si:Eu:Ga=0.96:1.96:2:0.04:0.04, weigh BaCO 3 , MgO, SiO 2 、Eu 2 o 3 , Ga 2 o 3 , and then mix well;
[0028] (2) Put the mixed material obtained in step (1) into a crucible and pre-fire it at 850°C, keep it warm for 6 hours, and cool it naturally with the furnace temperature;
[0029] (3) Grind the mixed material after pre-burning in step (2) again and place it in reducing gas H 2 +N 2 After holding at 1230℃ for 10 hours, cool naturally with the furnace temperature, and after grinding, the silicate white phosphor Ba which is co-doped with europium ions and gallium ions 0.96 Eu 0.04 Mg 1.96 Ga 0.04 Si 2 o 7 .
[0030] attached figure 1 is in reducing gas H 2 +N 2 The silicate white phosphor Ba 0.96 Eu 0.04 Mg 1.96 Ga 0.04 Si 2 o 7 X-ray powder diffraction pattern. The phase search found that the diffraction peaks of the obtained products all corresponded to the standard card JCPDS10-0044, which was BaMg 2 ...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 