Method for preparing upconversion nanometer material taking NaLuF4 as base material
A nanomaterial and matrix technology, which is applied in the field of preparation of upconversion nanomaterials, can solve the problems of difficulty in obtaining, restricting the development of upconversion materials, and reducing the luminous efficiency of materials, and achieves improved luminous efficiency, good upconversion luminescence performance and morphology. controllable effect
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Embodiment 1
[0024] This embodiment relates to a NaLuF 4 A preparation method for an upconversion nanomaterial of a matrix, comprising the steps of:
[0025] Step 1, take 25ml of yttrium oxide, ytterbium oxide, and holmium oxide in a molar ratio of 20:18:2 and dissolve it in 2mol / L hydrochloric acid solution, add deionized water to prepare a rare earth chloride salt solution with a concentration of 0.05mol / L Add 2ml of 0.01mol / L ethylenediaminetetraacetic acid aqueous solution, stir evenly for 20min, add 5ml of 2.5mol / L sodium fluoride aqueous solution, stir for 30min to obtain A solution;
[0026] Step 2: Put the solution A into the reaction kettle, conduct a hydrothermal reaction at 170°C, and cool for 10 hours to obtain the solution B;
[0027] Step 3: Heating solution B, separating by precipitation, washing, and drying at 75°C for 10 hours to obtain the final product NaLuF 4 Substrate upconversion nanomaterials.
[0028] Implementation effect: the product obtained in this example is...
Embodiment 2
[0030] This embodiment relates to a NaLuF 4 A preparation method for an upconversion nanomaterial of a matrix, comprising the steps of:
[0031] Step 1, take 26ml of yttrium oxide, ytterbium oxide, and holmium oxide in a molar ratio of 25:18:2 and dissolve it in 3mol / L hydrochloric acid solution, add deionized water to prepare a rare earth chloride salt solution with a concentration of 0.1mol / L Add 3ml of 0.1mol / L ethylenediaminetetraacetic acid aqueous solution, stir evenly for 25min, add 6ml of 2.5mol / L sodium fluoride aqueous solution, stir for 35min to obtain A solution;
[0032] Step 2, put the solution A into the reactor, conduct a hydrothermal reaction at 175°C, and cool for 10 hours to obtain the solution B;
[0033] Step 3: Heating solution B, separating by precipitation, washing, and drying at 75°C for 12 hours to obtain the final product NaLuF 4 Substrate upconversion nanomaterials.
[0034] Implementation effect: the product obtained in this example is NaLuF 4 ...
Embodiment 3
[0036] This embodiment relates to a NaLuF 4 A preparation method for an upconversion nanomaterial of a matrix, comprising the steps of:
[0037] Step 1, take 30ml of yttrium oxide, ytterbium oxide, and holmium oxide in a molar ratio of 30:18:2 and dissolve it in 4mol / L hydrochloric acid solution, add deionized water to prepare a rare earth chloride salt solution with a concentration of 0.2mol / L Add 4ml of 0.3mol / L ethylenediaminetetraacetic acid aqueous solution, stir evenly for 20min, add 7ml of 3mol / L sodium fluoride aqueous solution, stir for 40min to obtain A solution;
[0038] Step 2: Put the solution A into the reaction kettle, conduct a hydrothermal reaction at 185°C, and cool for 13 hours to obtain the solution B;
[0039] Step 3: Heating solution B, separating by precipitation, washing, and drying at 80°C for 13 hours to obtain the final product NaLuF 4 Substrate upconversion nanomaterials.
[0040] Implementation effect: the product obtained in this example is NaL...
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Abstract
Description
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