Preparation method for biomass-based nitrogen-doped thin layer graphitized carbon material
A thin-layer graphite, nitrogen-doped technology, applied in chemical instruments and methods, inorganic chemistry, carbon compounds, etc., can solve the problems of uncontrollable surface structure, low degree of graphitization, and thick graphitic carbon-carbon layer, and achieve thin graphite. layer, the synthesis method is simple, and the effect of good graphitization degree
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Embodiment 1
[0022] (1) First put 1g of lignin into a round bottom bottle, add 10mL of 0.1mol / L acetic anhydride solution and 10ml of 0.1mol / L nitric acid, stir at room temperature for 5h, then add 1mol / L sodium hydroxide solution Adjust the pH to neutral, and finally extract with tetrahydrofuran to obtain nitrated lignin;
[0023] (2) Take 0.5g of nitrolignin obtained in step 1) and dissolve it in 50% ethanol solution, add a little iron powder, drop in 2ml of hydrochloric acid, heat up to 130°C, react for 6h, then add dropwise sodium hydroxide solution (1mol / L) adjusting the pH to alkaline, centrifuging, washing, and drying to obtain nitrogen-doped lignin;
[0024] (3) The nitrogen-doped lignin precursor obtained in step 2) was placed in a high-temperature furnace, and the temperature was raised to 1200 °C at a rate of 2 °C / min in an argon atmosphere, and the flow rate of the inert gas was 50 mL / min. After carbonizing at 1200° C. for 3 hours, cool naturally to room temperature to obtain...
Embodiment 2
[0027] (1) First put 1g of lignin into a round bottom bottle, add 10mL of 0.1mol / L acetic anhydride solution and 10ml of 0.1mol / L nitric acid, stir at room temperature for 5h, then add 1mol / L sodium hydroxide solution Adjust the pH to neutral, and finally extract it with tetrachloromethane to obtain nitrified lignin;
[0028] (2) Take 0.5g of nitrated lignin obtained in step 1) and dissolve it in 50% ethanol solution, add a little iron powder, drop in 2ml of hydrochloric acid, heat up to 130°C, react for 6h, and then add dropwise sodium hydroxide solution (1mol / L) adjusting the pH to alkaline, centrifuging, washing and drying to obtain nitrogen-doped lignin.
[0029] (3) The nitrogen-doped lignin precursor obtained in step 2) was placed in a high-temperature furnace, and the temperature was raised to 1200 °C at a rate of 2 °C / min in an argon atmosphere, and the flow rate of the inert gas was 50 mL / min. After carbonization at 1000° C. for 3 h, it was naturally cooled to room ...
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