Rare-earth-doped cesium zirconium fluoride-based up-conversion luminescent nano material and preparation method thereof
A technology of rare earth doping and nanomaterials, applied in the direction of luminescent materials, chemical instruments and methods, etc., to achieve the effect of good repeatability, good dispersion, and easy control of synthesis conditions
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Embodiment 1
[0025] A preparation of Cs 2 ZrF 6 :20mol%Yb 3+ ,2mol%Er 3+ A method for preparing an upconversion luminescent nanomaterial, comprising the following steps:
[0026] Weigh 0.3804g of zirconium acetylacetonate, 0.007g of erbium acetate and 0.0845g of ytterbium acetate into a 100mL three-neck flask at room temperature, add 8mL of oleic acid and 12mL of octadecene, and stir to make them evenly mixed. Under the protection of nitrogen flow, the above mixture was heated to 150°C and kept at this temperature for 60 minutes to completely dissolve the zirconium acetylacetonate and rare earth acetate to obtain a transparent clear solution. After cooling to room temperature, 15 mL of a methanol solution in which 0.4887 g of cesium carbonate and 0.2223 g of ammonium fluoride were dissolved was added dropwise, stirred and allowed to react at room temperature for 30 minutes. Then the mixed solution was heated to 50° C. and kept for 30 minutes to remove methanol in the reaction system. ...
Embodiment 2
[0031] a Cs 2 ZrF 6 :20mol%Yb 3+ ,2mol%Tm 3+ A method for preparing an upconversion luminescent nanomaterial, comprising the following steps:
[0032] Weigh 0.3804g of zirconium acetylacetonate, 0.0072g of thulium acetate and 0.0845g of ytterbium acetate into a 100mL three-neck flask at room temperature, add 8mL of oleic acid and 12mL of octadecene, and stir to mix evenly. Under the protection of nitrogen flow, the above mixture was heated to 150°C and kept at this temperature for 60 minutes to completely dissolve the zirconium acetylacetonate and rare earth acetate to obtain a transparent clear solution. After cooling to room temperature, 15 mL of a methanol solution in which 0.4887 g of cesium carbonate and 0.2223 g of ammonium fluoride were dissolved was added dropwise, stirred and allowed to react at room temperature for 30 minutes. Then the mixed solution was heated to 50° C. and kept for 30 minutes to remove methanol in the reaction system. After the methanol was re...
Embodiment 3
[0034] a Cs 2 ZrF 6 :20mol%Yb 3+ ,2mol%Ho 3+ A method for preparing an upconversion luminescent nanomaterial, comprising the following steps:
[0035] Weigh 0.3804g of zirconium acetylacetonate, 0.0068g of holmium acetate and 0.0845g of ytterbium acetate into a 100mL three-neck flask at room temperature, add 8mL of oleic acid and 12mL of octadecene, and stir to mix evenly. Under the protection of nitrogen flow, the above mixture was heated to 150°C and kept at this temperature for 60 minutes to completely dissolve the zirconium acetylacetonate and rare earth acetate to obtain a transparent clear solution. After cooling to room temperature, 15 mL of a methanol solution in which 0.4887 g of cesium carbonate and 0.2223 g of ammonium fluoride were dissolved was added dropwise, stirred and allowed to react at room temperature for 30 minutes. Then the mixed solution was heated to 50° C. and kept for 30 minutes to remove methanol in the reaction system. After the methanol was remo...
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