Phosphor for white light LED with adjustable emitting peak and its prepn process
A technology of emission peaks and phosphors, which is applied in the field of phosphors, can solve the problems of inability to meet the requirements of high-performance devices, low effective conversion efficiency of phosphors, narrow half-height widths of excitation and emission peaks, etc., and achieve low equipment cost, easy operation, The effect of stable performance
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Embodiment 1
[0031] Ca 0.85 WO 4 :Eu 0.1 5. The preparation of phosphor powder, the specific implementation process is as follows:
[0032] Weigh CaCO according to the molar ratio of the above stoichiometric formula 3 (AR) 1.7015g, WO 3 (AR) 4.6370g, Eu 2 o 3 (4N)0.5282g, H 3 BO 3 (AR) 0.3433g. After the above-mentioned raw materials are fully ground and uniform, they are put into an alumina crucible and heat-treated in an air atmosphere at 1000°C for 3 hours. The heat-treated product is crushed, washed with water to remove impurities, filtered, and dried at 90°C to obtain the chemical composition of Ca 0.85 WO 4 :Eu 0.15 of red phosphor. Its excitation spectrum see figure 1 , the emission spectrum see figure 2 , the fluorescence data are shown in Table 1. It can be seen from the chart data that the phosphor can be effectively excited by ultraviolet, purple or blue light in the range of 250-480nm.
[0033] The stoichiometric formula of table 1 example 1~5 and its fluoresce...
Embodiment 2
[0036] (Ca 0.5 Mg 0.35 )(W 0.8 Mo 0.2 )O 4 :Eu 0.15 The preparation of fluorescent powder, the specific implementation process is as follows:
[0037] Weigh CaCO according to the molar ratio of the above stoichiometric formula 3 (AR)0.8508g, (MgCO 3 ).Mg(OH) 2 .5H 2 O(AR)0.6801g, (AR)WO 3 (AR) 3.7096g, MoO 3 (AR) 0.5758g, Eu 2 o 3 (4N)0.5282g, H 3 BO 3 (AR) 0.3172g. After the above-mentioned raw materials are fully ground and uniform, they are put into an alumina crucible and heat-treated in an air atmosphere at 1050°C for 2.5 hours. The heat-treated product is crushed, pickled to remove impurities, filtered, and dried at 100°C to obtain the chemical composition of Ca 0.85 (W 0.8 Mo 0.2 )O 4 :Eu 0.15 of red phosphor. Its excitation spectrum see image 3 , the emission spectrum see Figure 4 , the fluorescence data are shown in Table 1. It can be seen from the chart data that the phosphor can be effectively excited by ultraviolet, purple or blue light in...
Embodiment 3
[0039] (Ca 0.5 Sr 0.35 )(W 0.5 Mo 0.5 )O 4 :Eu 0.15 The preparation of fluorescent powder, the specific implementation process is as follows:
[0040] Weigh CaCO according to the molar ratio of the above stoichiometric formula 3 (AR) 0.8508g, SrCO 3 (AR) 1.0333g, WO 3 (AR) 2.3185g, MoO 3 (AR) 1.4394g, Eu 2 o 3 (4N)0.5282g, H 3 BO 3 (AR) 0.3085g. After the above-mentioned raw materials are fully ground and uniform, they are put into an alumina crucible and heat-treated in an air atmosphere at 1100°C for 2 hours. The heat-treated product is crushed, washed with alkali and water to remove impurities, filtered, and dried at 80°C to obtain the chemical composition of Ca 0.85 (W 0.5 Mo 0.5 )O 4 :Eu 0.15 of red phosphor. Its excitation spectrum see Figure 5 , the emission spectrum see Image 6 , the fluorescence data are shown in Table 1. It can be seen from the chart data that the phosphor can be effectively excited by ultraviolet, purple or blue light in the ...
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