Dark red fluorescent powder and preparation method thereof
A fluorescent powder and deep red technology, which is applied in the field of deep red fluorescent powder for LEDs and its preparation, can solve the problems of poor chemical stability and easy decomposition of sulfide fluorescent powder, and strict requirements for production equipment, and achieve easy operation, low cost, and easy preparation. The effect of simple method
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Embodiment 1
[0030] 1. Weigh 3.47molMgO, 0.49molMgF 2 , 1molGeO 2 , 0.02molMnCO 3 , 0.01molNH 4 Cl, 0.005molLi 2 CO 3 And 0.01molNaF, the raw materials are all analytically pure.
[0031] 2. Put the above raw materials in the mixing tank and mix them evenly.
[0032] 3. Put the mixture into a crucible and put it into an air atmosphere furnace, and sinter at 1200° C. for 6 hours.
[0033] 4. Put the powder block obtained in step 3 into a crucible after crushing, put it into an air atmosphere furnace, and sinter at 900° C. for 2 hours.
[0034] 5. Crush the powder block obtained in step 4 and pass through a 300-mesh sieve to obtain deep red fluorescent powder. The chemical formula is:
[0035] Mg 3.96 Ge O 5.5 f 0.99 Cl 0.01 :Mn 0.02, Li 0.01, Na 0.01 .
Embodiment 2
[0037] 1. Weigh 3.47molMgO, 0.48molMgF 2 , 1molGeO 2 , 0.03molMnCO 3 , 0.02molNH 4 Cl, 0.005molNa 2 CO 3 And 0.01molKF, raw materials are all analytically pure.
[0038] 2. Put the above raw materials in the mixing tank and mix them evenly.
[0039] 3. Put the mixture into a crucible and put it into an air atmosphere furnace, and sinter at 1250° C. for 5 hours.
[0040] 4. Put the powder block obtained in step 3 into a crucible after crushing, put it into an air atmosphere furnace, and sinter at 1000° C. for 3 hours.
[0041] 5. Crush the powder block obtained in step 4 and pass through a 300-mesh sieve to obtain deep red fluorescent powder. The chemical formula is:
[0042] Mg 3.95 Ge O 5.5 f 0.98 Cl 0.02 :Mn 0.03, Na 0.01, K 0.01 .
Embodiment 3
[0044] 1. Weigh 3.43molMgO, 0.49molMgF 2 , 0.95molGeO 2 , 0.05molSiO 2 , 0.04molMnCO 3 , 0.02molNH4Cl, 0.01molNa 2 CO 3 and 0.01molBi 2 o 3 , all raw materials were analytically pure.
[0045] 2. Put the above raw materials in the mixing tank and mix them evenly.
[0046] 3. Put the mixture into a crucible and put it into an air atmosphere furnace, and sinter at 1150° C. for 7 hours.
[0047] 4. Put the powder block obtained in step 3 into a crucible after crushing and put it into an air atmosphere furnace, and sinter at 1050° C. for 4 hours.
[0048] 5. Crush the powder block obtained in step 4 and pass through a 300-mesh sieve to obtain a deep red phosphor with the chemical formula Mg 3.92 Ge 0.95 Si 0.05 o 5.5 f 0.98 Cl 0.02 :Mn 0.04, Na 0.02, Bi 0.02 .
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