A lignin-based transition metal-nitrogen-doped carbon material and its preparation and application
A transition metal and nitrogen-doped carbon technology, which is applied in the fields of material science and energy storage and conversion, can solve the problems of affecting oxygen reduction performance and agglomerating inactive metal particles, and achieve high-value utilization, simple preparation process and low price cheap effect
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Embodiment 1
[0043] (1) Dissolve ferric chloride in water to obtain an aqueous ferric chloride solution with a concentration of 0.1g / mL; then add lignosulfonic acid (the mass ratio of lignosulfonic acid and ferric chloride is 1:2) to chlorine In the ferric chloride aqueous solution, stir evenly to obtain lignosulfonic acid / ferric chloride mixed solution;
[0044](2) Transfer the ligninsulfonic acid / ferric chloride mixture in step (1) to a hot water reactor, heat up to 180°C for hydrothermal treatment for 4 hours, cool to room temperature after the reaction, and wash the solid product with water and dry (60°C) to obtain a hydrothermal pre-carbonized product;
[0045] (3) Fully mix the pre-carbonized product and melamine at a mass ratio of 1:4, place in a tube furnace, heat up to 900°C for carbonization in an inert atmosphere (nitrogen) for 2 hours, and cool to room temperature after the reaction is complete. The carbonized product was washed with 1M hydrochloric acid solution, then washed ...
Embodiment 2
[0048] (1) Dissolve ferric chloride in water to obtain an aqueous ferric chloride solution with a concentration of 0.1g / mL; then add lignosulfonic acid (the mass ratio of lignosulfonic acid and ferric chloride is 1:2) to chlorine In the ferric chloride aqueous solution, stir evenly to obtain lignosulfonic acid / ferric chloride mixed solution;
[0049] (2) Transfer the ligninsulfonic acid / ferric chloride mixture in step (1) to a reaction kettle, place it in a muffle furnace, heat up to 180° C. for hydrothermal treatment for 4 hours, and cool to room temperature after the reaction is completed. Washing with water and drying at 60°C to obtain a hydrothermal pre-carbonized product;
[0050] (3) Fully mix the pre-carbonized product and melamine according to a mass ratio of 1:4, place in a tube furnace, heat up to 800°C for carbonization in an inert atmosphere (nitrogen) for 2 hours, and cool to room temperature after the reaction is completed. The carbonized product was washed with...
Embodiment 3
[0053] (1) Dissolve ferric chloride in water to obtain an aqueous ferric chloride solution with a concentration of 0.1g / mL; then add lignosulfonic acid (the mass ratio of lignosulfonic acid and ferric chloride is 1:2) to chlorine In the ferric chloride aqueous solution, stir evenly to obtain lignosulfonic acid / ferric chloride mixed solution;
[0054] (2) Transfer the ligninsulfonic acid / ferric chloride mixture in step (1) to a reaction kettle with a certain capacity, place it in a muffle furnace, heat up to 180° C. for hydrothermal treatment for 4 hours, and cool to room temperature after the reaction is completed. The solid product was washed with water and dried at 60°C to obtain a hydrothermal pre-carbonized product;
[0055] (3) Fully mix the pre-carbonized product and melamine at a mass ratio of 1:4, place in a tube furnace, heat up to 1000°C for carbonization in an inert atmosphere (nitrogen) for 2 hours, and cool to room temperature after the reaction is complete. The ...
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