Method for covering silicon dioxide film on aluminate series long afterglow fluorescent powder surface
A long-lasting phosphor and silicon dioxide technology, which is applied in chemical instruments and methods, luminescent materials, etc., can solve the problems of changing the composition and performance of luminescent materials, incomplete surface coating, and performance degradation, etc., to achieve low cost and long-lasting afterglow. Long time, the effect of inhibiting hydrolysis
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Embodiment 1
[0016] Weigh 20 grams of strontium aluminate yellow-green long-lasting phosphor, 2 0.70 g of tetraethyl orthosilicate is weighed to account for 1% by mass of the phosphor powder. According to tetraethyl orthosilicate: ethanol: deionized water = 1:6:10 (volume ratio), measure ethanol and deionized water, place them in a beaker, and adjust the pH value of the solution to 6 with nitric acid. Heated in a water bath at 90°C with constant stirring for 3 minutes to turn the solution into a sol. Pour the phosphor powder into the sol, and stir while heating at 100°C. After the phosphor powder expands loosely and the sol completely turns into a gel, put the beaker in an oven and keep it at 100°C for 2 hours to dry. Put the dried coated powder in a sintering furnace, keep it warm at 500°C for 1 hour, and take it out after cooling.
[0017] After coating, the phosphor powder will not be hydrolyzed after soaking in water for 24 hours, the initial brightness will be significantly higher t...
Embodiment 2
[0019] Weigh 20 grams of calcium aluminate series purple long-lasting phosphor, 2 Accounting for 3% by mass of the phosphor powder, weigh 2.08 grams of tetraethyl orthosilicate. According to tetraethyl orthosilicate: ethanol: deionized water = 1:3:4 (volume ratio), measure ethanol and deionized water, place them in a beaker, and adjust the pH value of the solution to 4 with nitric acid. Heated in a water bath at 80°C with constant stirring for 5 minutes to turn the solution into a sol. Pour the phosphor powder into the sol, and stir while heating at 80°C. After the phosphor powder expands loosely and the sol completely turns into a gel, put the beaker in an oven, keep it warm at 60°C for 13 hours, and dry at °C. Put the dried coated powder in a sintering furnace, keep it warm at 400°C for 2 hours, and take it out after cooling.
[0020] After coating, there is a layer of transparent silicon dioxide film on the surface of the phosphor powder, such as figure 1 shown. After c...
Embodiment 3
[0022] Weigh 30 grams of strontium aluminate blue long-lasting phosphor, 2 Accounting for 5% by mass of the phosphor powder, weigh 5.21 grams of ethyl orthosilicate. According to tetraethyl orthosilicate: ethanol: deionized water = 1:4:5 (volume ratio), measure ethanol and deionized water, place them in a beaker, and adjust the pH value of the solution to 3 with nitric acid. Heated in a water bath at 70°C and stirred continuously for 8 minutes to turn the solution into a sol. Pour the phosphor powder into the sol, and stir while heating at 50°C. After the phosphor powder expands loosely and the sol completely turns into a gel, put the beaker in an oven, and first heat it at 70°C for 10 hours to dry. Put the dried coated powder in a sintering furnace, keep it warm at 450°C for 1.5 hours, and take it out after cooling.
[0023] After coating, the phosphor powder will not be hydrolyzed after soaking in water for 24 hours, the initial brightness will be significantly higher than...
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