Modified carbon nano dots with characteristics of near-infrared absorption and near-infrared luminescence as well as preparation method and application of modified carbon nano dots
A technology of carbon nano-dots and modified carbon, which is applied in nanotechnology, chemical instruments and methods, and nanotechnology for materials and surface science, and can solve the difficulty of red or near-infrared light emission and limit carbon nano-dots Application and other issues
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[0060] The present invention provides a method for preparing modified carbon nano-dots described in the above technical solution, comprising the following steps:
[0061] The carbon nano-dots are mixed with a raw material containing an electron-withdrawing group, and the raw material containing an electron-withdrawing group is a compound containing an electron-withdrawing group or a polymer containing an electron-withdrawing group, and reacted to obtain a modified carbon nano-dot.
[0062] The preparation method is simple, low in price and easy to realize industrialization.
[0063] The types of the carbon nano-dots, electron-withdrawing group-containing compounds and electron-withdrawing group-containing polymers are the same as those of the carbon nano-dots, electron-withdrawing group-containing compounds and electron-withdrawing group-containing polymers described in the above technical scheme The types are the same and will not be repeated here.
[0064] The volume ratio ...
Embodiment 1
[0070] Carbon nano-dots with near-infrared absorption and near-infrared luminescence under near-infrared light excitation are prepared by modifying the surface of carbon nano-dots emitting red light with DMSO.
[0071] The preparation method of the carbon nano-dots with near-infrared luminescence under the above-mentioned near-infrared absorption and near-infrared light excitation:
[0072] Dissolve citric acid and urea in DMF at a mass ratio of 1:2 to obtain a transparent solution, place it in a 50ml polytetrafluoroethylene autoclave, react at 160°C for 6h, add NaOH (50mg / ml) solution to the reacted solution, Add a large amount of ethanol to obtain a black solid, wash the solid with water, centrifuge (16000rpm, 5min), freeze-dry to obtain a dark green powder, disperse the powder in an aqueous solution, add dilute HCl solution (5wt%), obtain a precipitate, centrifuge, and wash with water twice Freeze-dry after three times to obtain a black powder, which is carbon nanodots emit...
Embodiment 2
[0078] Carbon nano-dots with near-infrared absorption and near-infrared luminescence under near-infrared light excitation are prepared by modifying the surface of carbon nano-dots emitting orange-red light with DMSO.
[0079] The preparation method of the carbon nano-dots with near-infrared luminescence under the above-mentioned near-infrared absorption and near-infrared light excitation:
[0080] Dissolve citric acid and urea in DMF at a mass ratio of 1:2 to obtain a transparent solution, place it in a 50ml polytetrafluoroethylene autoclave, react at 160°C for 6h, add NaOH (50mg / ml) solution to the reacted solution, A large amount of ethanol was added to obtain a black solid, which was washed with water, centrifuged (16,000 rpm, 5 min), and freeze-dried to obtain a dark green powder, which was carbon nanodots emitting orange-red light.
[0081] Put the dark green powder in a beaker, add DMSO, stand for 1 h, freeze-dry to obtain a black powder, which is carbon nanodots with ne...
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