Blue-to-cyan color adjustable fluorescent powder and preparation method thereof
A phosphor and cyan technology, which is applied in the field of blue to cyan color-tunable phosphors and its preparation, can solve the problems affecting the luminous performance of three-color phosphors, low luminous efficiency, and reduced performance of white LEDs.
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Embodiment 1
[0022] Weigh cerium oxide (CeO 2 ) 0.0172g, anhydrous lithium carbonate (Li 2 CO 3 ) 0.0040g, calcium carbonate (CaCO 3 ) 3.9840g, silicon dioxide (SiO 2 ) 1.2000g, ammonium fluoride (NH 4 F) 0.7408g was fully ground in an agate mortar and mixed evenly, then fired in a carbon monoxide reducing atmosphere, sintered at 1000°C for 6 hours, and cooled naturally to room temperature. The sample is taken out and ground, and finally the product is obtained, and the composition of the fluorescent powder material is: Ca 3.98 Li 0.01 Ce 0.01 Si 2 o 7 f 2 .
[0023] The diffraction peak position of the obtained phosphor material is consistent with that of the crystallographic database PDF#41-1474, indicating that the material structure and matrix Ca 4 Si 2 o 7 f 2 agree, see figure 1 . figure 2 For the excitation spectrum of the material of this embodiment, from figure 2 It can be seen that the phosphor material of the present invention can be effectively excited by 330...
Embodiment 2
[0025] Weigh cerium oxide (CeO 2 ) 0.0344g, anhydrous lithium carbonate (Li 2 CO 3 ) 0.0080g, calcium carbonate (CaCO 3 ) 3.9640g, silicon dioxide (SiO 2 ) 1.2000g, ammonium fluoride (NH 4 F) 0.7408g was fully ground in an agate mortar and mixed evenly, then fired in a carbon monoxide reducing atmosphere, sintered at 1000°C for 6 hours, and cooled naturally to room temperature. The sample is taken out and ground, and finally the product is obtained, and the composition of the fluorescent powder material is: Ca 3.96 Li 0.02 Ce 0.02 Si 2 o 7 f 2 .
[0026] The fluorescent powder material of the present invention emits strong blue light under the excitation of 365nm near ultraviolet light, the position of the main emission peak is 430nm, and a weak peak appears in the range of 450nm-600nm, see the attached image 3 -b; color coordinates are (0.165, 0.144), see attached Figure 4 -b.
Embodiment 3
[0028] Weigh cerium oxide (CeO 2 ) 0.0688g, anhydrous lithium carbonate (Li 2 CO 3 ) 0.0160g, calcium carbonate (CaCO 3 ) 3.9240g, silicon dioxide (SiO 2 ) 1.2000g, ammonium fluoride (NH 4 F) 0.7408g was thoroughly ground in an agate mortar and mixed evenly, then calcined in a hydrogen reducing atmosphere, sintered at 800°C for 12 hours, and cooled naturally to room temperature. The sample is taken out and ground, and finally the product is obtained, and the composition of the fluorescent powder material is: Ca 3.92 Li 0.04 Ce 0.04 Si 2 o 7 f 2 .
[0029] The fluorescent powder material of the present invention emits strong blue light under the excitation of 365nm near ultraviolet light, the intensity of the main emission peak at 430nm is weakened, and the intensity of the weak peak in the range of 450nm-600nm is enhanced, see the attached image 3 -c; color coordinates are (0.169, 0.183), see attached Figure 4 -c.
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