Strontium aluminate luminescent material with hollow structure and preparation method
A technology of luminescent material and hollow structure, applied in luminescent materials, chemical instruments and methods, etc., can solve the problems of inferior luminous intensity of fluorescent powder, inconsistent powder particle size, high energy consumption in high temperature reaction, etc., to achieve low cost and process conditions. Less harsh, less process steps
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Embodiment 1
[0027] Preparation of Sr by Precipitation 3.99 Al 12 o 25 :Eu 0.01 :
[0028] Weigh 4g of glucose and dissolve it in absolute ethanol to make the solution volume 40mL, then transfer the solution into a 50mL reaction kettle with a polytetrafluoroethylene liner, cover and tighten it, and react at 120°C for 36h to prepare carbon The bead solution was washed several times with deionized water and absolute ethanol, centrifuged, and dried at 60°C to obtain carbon bead C coated with metal nanoparticles for use;
[0029] Weigh 10.3619gSrO and dissolve in nitric acid to obtain 100mL1mol / L of Sr(NO 3 ) 2 solution; weigh 5.0980gAl 2 o 3 Dissolved in nitric acid to obtain 100mL1mol / L Al(NO 3 ) 3 solution; weigh 0.1760gEu 2 o 3 Dissolved in nitric acid to obtain 100mL0.01mol / L Eu(NO 3 ) 3 solution. According to Sr 3.99 Al 12 o 25 :Eu 0.01 The stoichiometric ratio pipettes 3.99mL1mol / LSr(NO 3 ) 2 , 12mL1mol / LAl(NO 3 ) 3 and 1mL0.01mol / LEu(NO 3 ) 3 solution, placed in...
Embodiment 2
[0032] Preparation of Sr by Precipitation 3.8 al 12 o 25 :Eu 0.2 :
[0033] Weigh 0.003g of glucose and dissolve it in absolute ethanol to obtain 40mL of glucitol solution, transfer this solution into a 50mL reaction kettle with a polytetrafluoroethylene liner, cover and tighten it, and react at 150°C for 10h to prepare carbon The bead solution was centrifuged to obtain a solid phase, washed twice with deionized water and absolute ethanol, and dried at 70°C to obtain carbon bead C.
[0034] According to Sr 3.8 al 12 o 25 :Eu 0.2 The stoichiometric ratio pipettes 7.6mL0.5mol / LSr(CH 3 COO) 2 solution, 24mL0.5mol / LAl(CH 3 COO) 3 solution and 0.4mL0.5mol / LEu(CH 3 COO) 3 solution, placed in a 100mL beaker to form a mixed solution, then weighed 1.2 mg of carbon pellets C and added to the mixed solution, and stirred evenly. Under magnetic stirring, the above mixed solution was added dropwise to 37.5mL precipitant oxalic acid solution (0.8mol / L), and the pH was adjusted ...
Embodiment 3
[0037] Preparation of Sr by Precipitation 3.95 al 12 o 25 :Eu 0.05 :
[0038] Weigh 5g of glucose and dissolve it in absolute ethanol to obtain 40mL of glucitol solution, transfer this solution into a 50mL reaction kettle with a polytetrafluoroethylene liner, cover it and tighten it, and react at 180°C for 24h to prepare carbon small The solution of the spheres was centrifuged to obtain a solid phase, washed twice with deionized water and absolute ethanol, and dried at 60°C to obtain carbon spheres C.
[0039] According to Sr 3.95 al 12 o 25 :Eu 0.05 The stoichiometric ratio pipettes 3.95mL1mol / LSr(NO 3 ) 2 Solution, 12mL1mol / LAl(NO 3 ) 3 solution and 0.5mL0.1mol / LEu(NO 3 ) 3 solution, placed in a 100mL beaker to form a nitric acid mixture, then weighed 240 mg of carbon pellets C and added to the mixture, and stirred evenly. Under magnetic stirring, add the above mixed solution dropwise to 60mL precipitant oxalic acid solution (0.5mol / L), and then adjust the pH t...
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