Lithium yttrium fluoride nanocomposite material, its preparation method, and its application in photodynamic therapy
A nanocomposite material and composite material technology are applied in the field of photosensitizer-coupled rare earth-doped yttrium-lithium fluoride nanocomposite materials and their preparation, and can solve the problems of low efficiency of nanoparticle sensitizer photosensitizer, complicated method, low yield and the like
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Embodiment 1
[0087] Example 1: ZnPc-COOH coupling 8-nm LiYF 4 : Preparation of 0.20Yb / 0.02Er Nanocrystals
[0088] First weigh 0.1430g CF 3 COOLi, 0.3860g Y(CF 3 COO) 3 ,0.1132gYb(CF 3 COO) 3 and 0.0112g Er(CF 3 COO) 3 To a three-hole flask, then add 8mL oleic acid and 6mL oleylamine solvent. Then pass in N 2 Under certain conditions, the temperature was raised to 100°C and kept for 10 minutes to dissolve the solid reactants until transparent, and then heated to 320°C for 1 hour. After cooling down to room temperature, add 20mL ethanol for precipitation, centrifuge and wash to obtain 8nm oil-soluble LiYF 4 : 0.20Yb / 0.02Er nanocrystal. Disperse the nanocrystals in 15mL hydrochloric acid aqueous solution (0.1M) and sonicate for 15min, centrifuge to redisperse the obtained precipitate in dimethylformamide, add 3mg ZnPc-COOH and stir for 1h, centrifuge to obtain the precipitate, and disperse in water. After adding 20mg of PVP and stirring overnight, the precipitate obtained by centrif...
Embodiment 2
[0089] Example 2: ZnPc-COOH coupling 25-nm LiYF 4 : Preparation of 0.20Yb / 0.02Er Nanocrystals
[0090] First weigh 0.1430g CF 3 COOLi, 0.3860g Y(CF 3 COO) 3 ,0.1132gYb(CF 3 COO) 3 and 0.0112g Er(CF 3 COO) 3 To a three-hole flask, and then add 8mL oleic acid, 4mL oleylamine solvent. Then pass in N 2 Under certain conditions, the temperature was raised to 100°C and kept for 10 minutes to dissolve the solid reactants until transparent, and then heated to 320°C for 1 hour. After cooling down to room temperature, add 20mL ethanol to precipitate, centrifuge, and wash to obtain 20nm oil-soluble LiYF 4 : 0.20Yb / 0.02Er nanocrystal. Disperse the nanocrystals in 15mL hydrochloric acid aqueous solution (0.1M) and sonicate for 15min, then centrifuge to redisperse the obtained precipitate in dimethylformamide, add 3mg ZnPc-COOH and stir for 1h, then centrifuge the obtained precipitate to disperse in water, add After stirring 20mg of PVP overnight, the precipitate obtained by cent...
Embodiment 3
[0091] Example 3: ZnPc-COOH coupling 50-nm LiYF 4 : Preparation of 0.20Yb / 0.02Er Nanocrystals
[0092] First weigh 0.1430g CF 3 COOLi, 0.3860g Y(CF 3 COO) 3 ,0.1132gYb(CF 3 COO) 3 and 0.0112g Er(CF 3 COO) 3 To a three-hole flask, then add 8mL oleic acid and 2mL oleylamine solvent. Then pass in N 2 Under certain conditions, the temperature was raised to 100°C and kept for 10 minutes to dissolve the solid reactants until transparent, and then heated to 320°C for 1 hour. After cooling down to room temperature, add 20mL ethanol to precipitate, centrifuge, and wash to obtain 50nm oil-soluble LiYF 4 : 0.20Yb / 0.02Er nanocrystal. Disperse the nanocrystals in 15mL hydrochloric acid aqueous solution (0.1M) and sonicate for 15min, centrifuge the precipitate and redisperse it in dimethylformamide, add 3mg ZnPc-COOH and stir for 1h, centrifuge to disperse the precipitate in water, add 20mg After PVP was stirred overnight, the precipitate obtained by centrifugation was washed sev...
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