Nitrogen-doped carbon quantum dot material as well as preparation method and application thereof
A technology of carbon quantum dots and nitrogen doping, applied in biochemical equipment and methods, nanotechnology for materials and surface science, analytical materials, etc., can solve the complex preparation process and fluorescence performance of nitrogen-doped carbon quantum dot materials Poor, low quantum yield and other problems, to achieve the effect of improving quantum yield, reducing energy consumption, and simple process
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Embodiment 1
[0042] First, take 0.5g of polyethyleneimine (PEI) and dissolve it in 50mL of deionized water; then cut 12g of orange peel into 1×1cm 2 After adding the tablets to the solution, stir the mixed solution to a pressure bottle. Put the pressure bottle in the oil bath on the magnetic stirrer to increase the temperature, react at 140°C, stop heating after 3h. Take out the pressure bottle and let it cool to room temperature naturally.
[0043] Centrifuge the above solution to remove the precipitate at a speed of 13000r / min and a time of 15min. After centrifugation, the precipitate was discarded, the supernatant was placed in a beaker, the supernatant was sucked with a syringe, and filtered with a 220μm water-based microporous membrane, the filtrate was retained, and the membrane and the precipitate on it were discarded.
[0044] Put the filtrate into a dialysis bag and dialyzed with deionized water for 12 h at room temperature to obtain a nitrogen-doped carbon quantum dot solution. Tran...
Embodiment 2
[0053] First, take 0.5g of polyethyleneimine (PEI) and dissolve it in 50mL of deionized water, then cut 12g of orange peel into 1×1cm 2 After adding the tablets to the solution, stir the mixed solution to a pressure bottle. Put the pressure bottle in the oil bath on the magnetic stirrer to increase the temperature, react at 50°C, stop heating after 4h. Take out the pressure bottle and let it cool to room temperature naturally.
[0054] Centrifuge the above solution to remove the precipitate at a speed of 10000r / min and a time of 20min. After centrifugation, the precipitate was discarded, the supernatant was placed in a beaker, the solution was sucked with a syringe, and the solution was filtered with a 220μm water-based microporous filter membrane, the filtrate was retained, and the filter membrane and the sediment on it were discarded.
[0055] The filtrate was put into a dialysis bag and dialyzed with deionized water for 20 hours at room temperature to obtain a nitrogen-doped ca...
Embodiment 3
[0057] Take 1g of polyethyleneimine (PEI) and dissolve it in 50mL of deionized water, then cut 12g of orange peel into 1×1cm 2 After adding the tablets to the solution, stir the mixed solution to a pressure bottle. Place the pressure bottle in an oil bath on a magnetic stirrer to raise the temperature, react at 100°C, stop heating after 4 hours, take out the pressure bottle, and cool to room temperature naturally.
[0058] Centrifuge the above solution to remove the precipitate at a speed of 10000r / min and a time of 20min. After centrifugation, the precipitate was discarded, the supernatant was placed in a beaker, the supernatant was sucked with a syringe, and filtered with a 220μm water-based microporous membrane, the filtrate was retained, and the membrane and the precipitate on it were discarded.
[0059] The filtrate was put into a dialysis bag and dialyzed with deionized water for 20 hours at room temperature to obtain a nitrogen-doped carbon quantum dot solution. Transfer th...
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Abstract
Description
Claims
Application Information
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