Preparation method of N-doped carbon quantum dots
A technology of carbon quantum dots and nitrogen doping, applied in chemical instruments and methods, nano-carbon, nanotechnology for materials and surface science, etc., can solve the complex preparation process and low quantum yield of carbon-based quantum dot materials and other issues, to achieve the effect of reducing production costs, low cost, and stable chemical properties
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[0015] The embodiment of the present invention provides a method for preparing nitrogen-doped carbon quantum dots, which includes the following steps:
[0016] S01. After mixing lignin and deionized water, adjust the pH of the system to be alkaline, and heat and stir for the first time to obtain a lignin dispersion; add carboxylation reagent and activator to the lignin dispersion, and stir at constant temperature After the reaction, centrifugal treatment is completed, the slurry-like product is collected, and carboxylated lignin is obtained after drying;
[0017] S02. After mixing the carboxylated lignin and deionized water, heat and stir for the second time to obtain a carboxylated lignin dispersion; add an amination reagent to the carboxylated lignin dispersion, and react with constant temperature stirring, Obtain an aminated lignin dispersion;
[0018] S03. Transfer the aminated lignin dispersion to an autoclave, and take it out after a constant temperature hydrothermal reaction ...
Embodiment 1
[0039] A method for preparing nitrogen-doped carbon quantum dots includes the following steps:
[0040] S11. Carboxylation of Lignin
[0041] 10g of lignin and 50g of deionized water were added to a 200mL three-necked flask, heated to 80℃ in a water bath, stirred at 800rpm and adjusted to pH=10, stirred at a constant temperature for 30min to obtain a lignin dispersion; then, 3g sodium perchlorate, 10g Dichloroacetic acid was sequentially added to the three-necked flask, stirring continued and reacted at a constant temperature for 3 hours. After the reaction, the reaction solution was transferred to a centrifuge tube, and centrifuged at 8000 rpm for 5 minutes, and centrifuged 3 times; finally, the muddy lignin at the bottom of the centrifuge tube was transferred to a vacuum drying oven and dried to obtain carboxylated lignin .
[0042] S12. Carboxylated lignin amination
[0043] 10g of carboxylated lignin and 50g of deionized water were added to a 200mL three-necked flask, stirred an...
Embodiment 2
[0047] A method for preparing nitrogen-doped carbon quantum dots includes the following steps:
[0048] S21. Lignin carboxylation
[0049] 10g of lignin and 50g of deionized water were added to a 200mL three-necked flask, heated in a water bath to 80℃, stirred at 800rpm and adjusted to pH=10, stirred at a constant temperature for 30min to obtain a lignin dispersion; then, 3g sodium perchlorate, 10g two Chloroacetic acid was sequentially added to the three-necked flask, stirring continued and reacted at constant temperature for 3h. After the reaction, the reaction solution was transferred to a centrifuge tube, and centrifuged at 8000 rpm for 5 minutes, and centrifuged 3 times; finally, the muddy lignin at the bottom of the centrifuge tube was transferred to a vacuum drying oven and dried to obtain carboxylated lignin .
[0050] S22. Carboxylated lignin amination
[0051] 10g of carboxylated lignin and 50g of deionized water were added to a 200mL three-necked flask, stirred and heated...
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