Preparation method of carbon quantum dots, carbon quantum dots and mofs composite thin film and its products and uses
A technology of carbon quantum dots and composite materials, applied in the field of material preparation, to achieve the effects of mild conditions, good temperature response, and rapid and efficient synthesis
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Embodiment 1
[0059] The microwave method synthesis of embodiment 1 carbon quantum dot
[0060] Weigh 5 grams of glucose and ultrasonically dissolve it in 12.5 milliliters of deionized aqueous solution, then put it into a 50 milliliter microwave reaction tube, and put the cleaned zinc sheet vertically into the reaction tube, seal it, and put it in a microwave instrument. Between 100-130 degrees, the time is 1-2 hours. With the extension of time, carbon quantum dots with higher concentration can be obtained.
[0061] The carbon quantum dot prepared above is carried out transmission electron microscope scanning, obtains the transmission electron microscope scanning figure of carbon quantum dot, specifically as follows figure 1 shown.
Embodiment 2
[0062] Embodiment 2 has the synthesis of the MOFs material of carboxylic acid functional group
[0063] A typical synthesis strategy is: weigh 2.3 grams of zirconium chloride, dissolve it in 50 milliliters of deionized water, then weigh 4.3 grams of pyromellitic acid and add it to obtain a mixture, and stir the above mixture at 100° C. for 24 hours, Obtain a solid material, then centrifuge the solid material with deionized water three times, then disperse it in deionized water at 100°C and continue to stir for 16 hours, then wash it twice with deionized water and acetone, and finally put it into a vacuum at 60°C Dry overnight in a desiccator to obtain MOFs materials with carboxylic acid functional groups.
Embodiment 3
[0064] Embodiment 3 has the synthesis of the MOFs material of carboxylic acid functional group
[0065] The method is the same as in Example 2, except that 1.3 grams of aluminum chloride is used to replace the 2.3 grams of zirconium chloride.
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