Preparation method of cadmium sulfide-loaded hexagonal phase ytterbium and erbium-doped sodium tetrafluoroyttrium composite photocatalyst
A technology of sodium tetrafluoroyttrium and cadmium sulfide, which is applied in chemical instruments and methods, physical/chemical process catalysts, chemical/physical processes, etc., can solve problems such as cumbersome operation and difficulty in controlling the morphology of upconversion nanoparticles, and achieve technological Simplicity, short reaction time, and the effect of reducing energy consumption
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[0023] A preparation method of cadmium sulfide loaded hexagonal phase ytterbium and erbium-doped sodium tetrafluoroyttrium composite photocatalyst, comprising the steps of:
[0024] 1) Add 0.68mmolY (NO 3 ) 3 ·6H 2 O,0.2mmolYb(NO 3 ) 3 ·6H 2 O and 0.02mmolEr(NO 3 ) 3 ·6H 2 O was dissolved in 10 mL deionized water and stirred for 30 min to obtain solution A;
[0025] 2) 2 mmol sodium citrate was dissolved in 15 mL deionized water to obtain solution B. Add solution B to A and stir for 30 minutes to finally obtain solution C;
[0026] 3) Dissolve 12mmol NaF in 15mL deionized water to obtain solution D, add solution D to C and continue to stir for 30min, then add it to a 50mL reaction kettle and heat it at 180°C for 18h, wash the obtained sample three times with deionized water and ethanol, and heat Dry for 12h to get NaYF in hexagonal phase 4 :Yb, Er;
[0027] 4) 50 mg of the prepared hexagonal phase NaYF 4 : Dissolve Yb, Er samples in 10mL ethanol solution, add 1mL ...
Embodiment 1
[0030] 1) Add 0.68mmolY (NO 3 ) 3 ·6H 2 O,0.2mmolYb(NO 3 ) 3 ·6H 2 O and 0.02mmolEr(NO 3 ) 3 ·6H 2 O was dissolved in 10 mL deionized water and stirred for 30 min to obtain solution A;
[0031] 2) 2 mmol sodium citrate was dissolved in 15 mL deionized water to obtain solution B. Add solution B to A and stir for 30 minutes to finally obtain solution C;
[0032] 3) Dissolve 12mmol NaF in 15mL deionized water to obtain solution D, add solution D to C and continue to stir for 30min, then add it to a 50mL reactor and heat at 180°C for 18h. The obtained sample was washed three times with deionized water and ethanol, and dried at 80°C for 12 hours to obtain the hexagonal NaYF 4 :Yb, Er;
[0033] 4) 50 mg of the prepared hexagonal phase NaYF 4 : Dissolve Yb and Er samples in 10mL ethanol solution, add 1mL (0.2g / mL) PVP, ultrasonicate for 1h, add 10mg of CdS nanoparticles prepared in advance, stir for 1h, add to a 20mL reactor and heat at 160°C for 6h to obtain the final Na...
Embodiment 2
[0036] 1) Add 0.68mmolY (NO 3 ) 3 ·6H 2 O,0.2mmolYb(NO 3 ) 3 ·6H 2 O and 0.02mmolEr(NO 3 ) 3 ·6H 2 O was dissolved in 10 mL deionized water and stirred for 30 min to obtain solution A;
[0037] 2) 2 mmol sodium citrate was dissolved in 15 mL deionized water to obtain solution B. Add solution B to A and stir for 30 minutes to finally obtain solution C;
[0038] 3) Dissolve 12mmol NaF in 15mL deionized water to obtain solution D, add solution D to C and continue to stir for 30min, then add it to a 50mL reactor and heat at 180°C for 18h. The obtained sample was washed three times with deionized water and ethanol, and dried at 80°C for 12 hours to obtain the hexagonal NaYF 4 :Yb, Er;
[0039] 4) 50 mg of the prepared hexagonal phase NaYF 4 : Dissolve Yb and Er samples in 10mL ethanol solution, add 1mL (0.2g / mL) PVP, ultrasonicate for 1h, add 20mg of pre-prepared CdS nanoparticles, stir for 1h, add to a 20mL reactor and heat at 160°C for 6h to obtain the final NaYF 4 :...
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