Organic-inorganic hybridized fluorescence nanoparticles capable of emitting color light as well as preparation method thereof
A technology of inorganic nanoparticles and fluorescent nanometers, which is applied in chemical instruments and methods, nanotechnology, nano-optics, etc., can solve the problems of complex synthesis methods, poor optical properties, and long preparation cycles, and achieve high luminous intensity and shortened impurity removal cycle, the effect of short preparation cycle
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Embodiment 1
[0023] Preparation of Blue Luminescent Organic-Inorganic Hybrid Fluorescent Nanoparticles
[0024] A blue-emitting organic-inorganic hybrid fluorescent nanoparticle, including monodisperse silica nanoparticles and carbon dots, see figure 1 .
[0025] (1) Preparation of monodisperse silica nanoparticles: first mix 2.45mL tetraethyl orthosilicate and 50mL absolute ethanol, then mix 3.00mL deionized water, 3.85mL ammonia water, and 40mL absolute ethanol. The above two solutions were mixed at room temperature under magnetic stirring, and the reaction was continuously stirred for 20 hours. After the reaction, it was washed three times by centrifugation with ethanol. Among them, the size standard deviation of inorganic nanoparticles between 30-100nm is 10-15%; the size standard deviation of inorganic nanoparticles between 100-200nm is 8-15%; the size standard deviation of inorganic nanoparticles between 200-280nm The size standard deviation is 6-15%.
[0026] (2) Preparation of ...
Embodiment 2
[0030] Preparation of Green Luminescent Organic-Inorganic Hybrid Fluorescent Nanoparticles
[0031] (1) Preparation of monodisperse silica nanoparticles: first mix 2.23mL tetraethyl orthosilicate and 50mL absolute ethanol, and then mix 2.82mL deionized water, 3.85mL ammonia water, and 40mL absolute ethanol. The above two solutions were mixed at room temperature under magnetic stirring, and the reaction was continuously stirred for 20 hours. After the reaction, it was washed three times by centrifugation with ethanol. Among them, the size standard deviation of inorganic nanoparticles between 30-100nm is 10-15%; the size standard deviation of inorganic nanoparticles between 100-200nm is 8-15%; the size standard deviation of inorganic nanoparticles between 200-280nm The size standard deviation is 6-15%.
[0032] (2) Preparation of organic-inorganic hybrid fluorescent nanoparticles: mix the silica nanoparticles obtained in (1) with 20 mg p-phenylenediamine, 10 mg sodium lignosul...
Embodiment 3
[0036] Preparation of Red Luminescent Organic-Inorganic Hybrid Fluorescent Nanoparticles
[0037] (1) Preparation of monodisperse silica nanoparticles: first mix 2.23mL tetraethyl orthosilicate and 50mL absolute ethanol, then mix 2.64mL deionized water, 3.85mL ammonia water, and 40mL absolute ethanol. The above two solutions were mixed at room temperature under magnetic stirring, and the reaction was continuously stirred for 20 hours. After the reaction, it was washed three times by centrifugation with ethanol. Among them, the size standard deviation of inorganic nanoparticles between 30-100nm is 10-15%; the size standard deviation of inorganic nanoparticles between 100-200nm is 8-15%; the size standard deviation of inorganic nanoparticles between 200-280nm The size standard deviation is 6-15%.
[0038] (2) Preparation of organic-inorganic hybrid fluorescent composite nanoparticles: Mix the silica nanospheres obtained in (1) with 10 mL of citric acid and 20 mg of 1,5-diaminona...
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