A rare earth/quantum dot composite up-conversion luminescent material and its preparation method and application
A technology of rare earth upconversion and luminescent materials, applied in luminescent materials, nanotechnology for materials and surface science, chemical instruments and methods, etc., can solve the overall quenching of upconversion luminescence and the invisible upconversion luminescence of quantum dots and other problems, to achieve the effect of breaking through low conversion efficiency, easy large-scale preparation, and easy promotion
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Embodiment 1
[0068] Example 1: LiYbF 4 :0.5%Tm 3+ @LiYF 4 / CsPbX 3 Preparation of (X=Cl, Br, I) Composite Upconversion Luminescent Material and Its Upconversion Luminescence Properties
[0069] The LiYbF 4 :0.5%Tm 3+ @LiYF 4 It can be prepared by the method disclosed in the Chinese invention patent application with application number 201710204060.9. 50 μmol oil-soluble LiYbF 4 :0.5%Tm 3+ @LiYF 4 Core-shell upconversion nanocrystals and 50 μmol oil-soluble CsPbX 3 Perovskite quantum dots are dispersed in 5mL cyclohexane to obtain LiYbF 4 :0.5%Tm 3+ @LiYF 4 Nanocrystalline / CsPbX 3 Perovskite quantum dot composite up-conversion luminescent material. Tailoring of CsPbX by compositional regulation of halogen X 3 The band gap and emission spectrum of perovskite quantum dots can obtain composite up-conversion luminescent materials with different emission wavelengths, and its emission spectrum can be continuously adjusted in the range of 340-750nm.
[0070] wxya 4 :0.5%Tm 3+ @LiY...
Embodiment 2
[0071] Example 2: LiYbF 4 :0.5%Tm 3+ / CsPbBr 3 Preparation of Composite Upconversion Luminescent Material and Its Upconversion Luminescence Properties
[0072] The LiYbF 4 :0.5%Tm 3+ It can be prepared by the method disclosed in the Chinese invention patent application with application number 201710204060.9. 20mg oil-soluble LiYbF 4 :0.5%Tm 3+ Up-converting nanocrystals and oil-soluble CsPbBr at different concentrations (0.2-20mg) 3 Perovskite quantum dots are dispersed in 10mL cyclohexane to obtain LiYbF 4 :0.5%Tm 3+ Nanocrystalline / CsPbBr 3 Perovskite quantum dot composite up-conversion luminescent material. By changing CsPbBr 3 The concentration of perovskite quantum dots can regulate the upconversion luminescence.
[0073] 980nm semiconductor laser (50W / cm 2 ) under the excitation of the upconversion fluorescence emission spectrum ( Figure 6 ) shows that with CsPbBr 3 With increasing concentration of perovskite quantum dots, the Tm in the composite 3+ The ...
Embodiment 3
[0074] Example 3: LiYbF 4 :1%Tm 3+ / CsPbCl 1.5 Br 1.5 Preparation of Composite Upconversion Luminescent Material and Its Upconversion Luminescence Properties
[0075] The LiYbF 4 :1%Tm 3+ It can be prepared by the method disclosed in the Chinese invention patent application with application number 201710204060.9. 10 mg oil-soluble LiYbF 4 :1%Tm 3+ Up-conversion nanocrystals and different molar amounts (5-10 mg) of oil-soluble CsPbCl 1.5 Br 1.5 Perovskite quantum dots are dispersed in 5mL cyclohexane to obtain LiYbF 4 :1%Tm 3+ Nanocrystalline / CsPbCl 1.5 Br 1.5 Perovskite quantum dot composite up-conversion luminescent material. By changing the CsPbCl 1.5 Br 1.5 The molar weight of perovskite quantum dots can regulate their upconversion luminescence.
[0076] 980nm semiconductor laser (100W / cm 2 ) under the excitation of the upconversion fluorescence emission spectrum ( Figure 9 a) shows that with CsPbCl 1.5 Br 1.5 With increasing concentration of perovskite...
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