Near infrared fluorescent probe substrate material of rare earth ion nano alkali metal rare earth fluoride and preparation method of near infrared fluorescent probe substrate material
A rare earth fluoride and rare earth ion technology, applied in the field of biomedical materials and optical functional materials, can solve the problems of poor stability, low efficiency of near-infrared fluorescent probes, etc., achieve good photostability and chemical stability, multiple excitation bands, easy-to-manipulate effects
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Embodiment 1
[0025] (1) According to the molar ratio of Na ion: Y ion: Er ion: Nd ion: Yb ion: F = 1: 0.997: 0.001: 0.001: 0.001: 4, weigh YbNO 3 , YNO 3 , NdNO 3 , ErNO 3 Dissolved in water to prepare a solution with a total rare earth ion concentration of 0.01mol / L;
[0026] (2) Add polyvinylpyrrolidone to the solution in step (1) according to 1% of the total mass of rare earth nitrate, and adjust the pH of the solution to 2 with ammonia water;
[0027] (3) Weigh and dissolve sodium nitrate in ethanol according to the chemical composition to prepare a 0.1mol / L solution; then add sodium fluoride into the solution according to the molar ratio of F ions to alkali metal ions is 1:1 , In a stirring state, add to the solution obtained in step (2), and stir for 0.5 hours to obtain a mixture;
[0028] (4) Place the mixture obtained in step (3) in a closed high-pressure hydrothermal reactor with polytetrafluoroethylene, and keep it warm for 48 hours at a temperature of 100°C and a volume rati...
Embodiment 2
[0030] (1) According to the molar ratio of Na ion: Gd ion: Tm ion: Nd ion: Yb ion: F = 1: 0.975: 0.01: 0.005: 0.01: 4, weigh GdNO 3 , YbNO 3 , NdNO 3 , TmNO 3 Dissolved in ethylene glycol to prepare a solution with a total rare earth ion concentration of 0.02mol / L;
[0031] (2) Add polyethylene glycol to the solution in step (1) according to 10% of the total mass of rare earth nitrate, and adjust the pH of the solution to 5 with sodium hydroxide;
[0032] (3) Weigh and dissolve sodium nitrate in methanol according to the chemical composition to prepare a 0.2mol / L solution; then add sodium fluoride into the solution according to the molar ratio of F ions to alkali metal ions is 2:1 , Stirring for 0.5 hours under stirring, adding to the solution obtained in step (2) to obtain a mixture;
[0033] (4) Place the mixture obtained in step (3) in a closed high-pressure hydrothermal reactor with polytetrafluoroethylene, and keep it warm for 24 hours at a temperature of 120°C and a ...
Embodiment 3
[0035] (1) According to the molar ratio of K ions: (Lu+Gd) ions: Tb ions: Nd ions: Yb ions: F = 1: (0.5+0.42): 0.03: 0.01: 0.04: 4, weigh the rare earth ions Nitrate GdNO 3 , YbNO 3 , NdNO 3 、LuNO 3 , TbNO 3 Dissolve in propanol, and prepare a solution with a total rare earth ion concentration of 0.05mol / L;
[0036] (2) Add sodium oleate to the solution in step (1) according to 50% of the total mass of rare earth nitrate, and adjust the pH of the solution to 8 with ammonia water;
[0037] (3) Dissolve potassium nitrate in a mixed solution of ethanol and water according to the chemical composition to prepare a 0.1mol / L solution; Add to solution to dissolve , In a stirring state, add to the solution obtained in step (2), and stir for 0.2 hours to obtain a mixture;
[0038] (4) Place the mixture obtained in step (3) in a closed high-pressure hydrothermal reactor with polytetrafluoroethylene, and keep it warm for 12 hours at a temperature of 140°C and a volume ratio of 0.5;...
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