Preparation method for Er<3+>-Yb<3+>-co-doped NaYF4 fluorescent powder
A fluorescent powder and tetragonal phase technology, applied in the field of Er3+
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Embodiment 1
[0025] 1) Weigh 0.27g solid powder yttrium acetate tetrahydrate, 0.072g solid powder ytterbium acetate tetrahydrate, 0.012g solid powder erbium acetate tetrahydrate and 0.04g solid sodium hydroxide;
[0026] 2) Measure 4mL of isopropanol, 4mL of ethanol, 1mL of trifluoroacetic acid and 3mL of water, add the solid powder into it, and stir for 3 hours to obtain transparent sol A;
[0027] 3) Transfer transparent sol A to a high-temperature-resistant crucible, and dry in an oven for 3 hours to obtain colloidal substance B;
[0028] 4) Put the colloidal substance B in a high-temperature furnace, raise the furnace temperature from room temperature to 300 °C at a rate of 4 °C / min., keep it warm for 1 hour, and take it out after cooling to room temperature with the furnace;
[0029] 5) Grinding to obtain Er that emits green light under 980nm laser excitation 3+ , Yb 3+ double doped YF 3 , hexagonal, tetragonal NaYF 4 Up-conversion phosphors with three-phase coexistence.
Embodiment 2
[0031] 1) Weigh 0.27g solid powder yttrium acetate tetrahydrate, 0.072g solid powder ytterbium acetate tetrahydrate, 0.012g solid powder erbium acetate tetrahydrate and 0.04g solid sodium hydroxide;
[0032] 2) Measure 4mL of isopropanol, 4mL of ethanol, 1mL of trifluoroacetic acid and 3mL of water, add the solid powder into it, and stir for 3 hours to obtain transparent sol A;
[0033] 3) Transfer transparent sol A to a high-temperature-resistant crucible, and dry in an oven for 3 hours to obtain colloidal substance B;
[0034] 4) Put the colloidal substance B in a high-temperature furnace, raise the temperature of the furnace from room temperature to 400 °C at a rate of 4 °C / min., keep it for 1 hour, and take it out after cooling to room temperature with the furnace;
[0035] 5) Grinding to obtain Er that emits green light under 980nm laser excitation 3+ , Yb 3+ double doped YF 3 , hexagonal, tetragonal NaYF 4 Up-conversion phosphors with three-phase coexistence.
Embodiment 3
[0037] 1) Weigh 0.27g solid powder yttrium acetate tetrahydrate, 0.072g solid powder ytterbium acetate tetrahydrate, 0.012g solid powder erbium acetate tetrahydrate and 0.04g solid sodium hydroxide;
[0038] 2) Measure 4mL of isopropanol, 4mL of ethanol, 1mL of trifluoroacetic acid and 3mL of water, add solid powder to it, stir for 1 hour, and obtain transparent sol A;
[0039] 3) Transfer transparent sol A to a high-temperature-resistant crucible, and dry in an oven for 3 hours to obtain colloidal substance B;
[0040] 4) Put the colloidal substance B in a high-temperature furnace, raise the furnace temperature from room temperature to 500 °C at a rate of 4 °C / min., keep it for 1 hour, and take it out after cooling to room temperature with the furnace;
[0041] 5) Grinding to obtain Er that emits green light under 980nm laser excitation 3+ , Yb 3+ double doped YF 3 , hexagonal, tetragonal NaYF 4 Up-conversion phosphors with three-phase coexistence.
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