Nitrogen-doped carbon nanometer particle as well as preparation method and application thereof
A technology of nano-particles and nitrogen-doped carbon, applied in applications, chemical instruments and methods, household appliances, etc., can solve the problems of limited applications, strong fluorescence quenching, etc., and achieve simple preparation methods, low cost, and convenient mass production Effect
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[0034] A preparation method of nitrogen-doped carbon nano-dot fluorescent ink, comprising the following steps:
[0035] ① Dissolving organic compounds containing polycarboxylates or polyhydroxyl groups in excess ammonia water to obtain a solution;
[0036] ② The solution prepared in ① is reacted by microwave heating to obtain a brown-black viscous liquid;
[0037] ③The prepared brown-black viscous liquid is heated and dried to remove residual small molecular compounds to obtain nitrogen-doped carbon nanoparticles.
[0038] In step 1 of the present invention, there is no limit to the amount of organic compound and ammonia, as long as the organic compound can be dissolved, the present invention can be realized. Excessive ammonia can ensure a more complete reaction, so it is preferred to dissolve the organic compound containing polycarboxy or polyhydroxy in excess ammonia In the process, there is no limit to the amount of excess ammonia water, and the excess ammonia water will v...
Embodiment 1
[0047] combine Figure 1-4Illustrative Example 1
[0048] Preparation of nitrogen-doped carbon nanoparticles of the present invention:
[0049] ① Dissolve 3 grams of citric acid in 20 milliliters of ammonia water to obtain a solution;
[0050] ②Put the solution prepared in ① into a microwave oven, and heat it in a microwave with a power of 700W for 5 minutes to obtain a brown-black viscous liquid;
[0051] ③The prepared brown-black viscous liquid was placed in an oven at a temperature of 80 degrees Celsius and heated for 1 hour to obtain nitrogen-doped carbon nanoparticles.
[0052] figure 1 It is the transmission electron microscope picture of the nitrogen-doped carbon nanoparticles of Example 1 of the present invention, from figure 1 It can be seen that the diameter of the nitrogen-doped carbon nanoparticles prepared in the present invention is 5nm-60nm.
[0053] figure 2 It is the X-ray photoelectron spectrum diagram of the nitrogen-doped carbon nanoparticles of Exam...
Embodiment 2
[0057] Preparation of nitrogen-doped carbon nanoparticles of the present invention:
[0058] ① Dissolve 3 grams of glucose in 20 milliliters of ammonia water to obtain a solution;
[0059] ②Put the solution prepared in ① into a microwave oven, and heat it in a microwave with a power of 700W for 5 minutes to obtain a brown-black viscous liquid;
[0060] ③The prepared brown-black viscous liquid was placed in an oven at a temperature of 80 degrees Celsius and heated for 1 hour to obtain nitrogen-doped carbon nanoparticles.
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