Method for preparing mesoporous carbon with narrow pore size distribution
A technology of pore size distribution and pore carbon, which is applied in the direction of nano-carbon, can solve the problems of people and the environment that are easy to cause harm and pollution, and achieve the effects of promoting industrialization, environmental friendliness, and concentrated pore structure distribution
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Embodiment 1
[0014] Put 1 mol of phenol, 2 mol of formaldehyde, 0.1 mol of sodium hydroxide, 0.02 mol of 1-ethyl-3-methylimidazolium tetrafluoroborate and 55.6 mol of water into a three-necked flask at the same time, stir at 30°C for 3 hours, then raise the temperature Stir at a constant temperature of 75° C. for 3 hours, then cool naturally, filter, and dry to obtain a phenolic resin polymer containing an ionic liquid. The above-mentioned phenolic resin polymer was used as a carbon precursor, heated to 600°C in a carbonization furnace at a heating rate of 0.5°C / min, and then kept at a constant temperature for 3 hours. Then cool naturally to obtain mesoporous carbon (pore diameter: 2.1nm).
Embodiment 2
[0016] Put 1 mol of resorcinol, 5 mol of formaldehyde, 0.1 mol of sodium hydroxide, 0.05 mol of octaalkyl-3-methylimidazole perchlorate and 55.6 mol of water into a three-necked flask at the same time, and stirred at 35°C for 3.5 hours, Then, the temperature was raised to 78° C. and stirred at a constant temperature for 3 hours, then naturally cooled, filtered, and dried to obtain a phenolic resin polymer containing an ionic liquid. The above-mentioned phenolic resin polymer was used as the carbon precursor, heated to 650 °C in a carbonization furnace at a heating rate of 1 °C / min, and then kept at a constant temperature for 3 hours. Then cool naturally to obtain mesoporous carbon (pore size: 3.5nm).
Embodiment 3
[0018] Put 1 mol of phenol, 3 mol of formaldehyde, 0.1 mol of sodium hydroxide, 0.08 mol of hexadecyl-3-methylimidazole acetate and 55.6 mol of water into a three-necked flask at the same time, stir at 40°C for 4 hours, and then heat up to Stir at a constant temperature of 80°C for 2.5 hours, then cool naturally, filter, and dry to obtain a phenolic resin polymer containing an ionic liquid. The above-mentioned phenolic resin polymer was used as a carbon precursor, heated to 700°C in a carbonization furnace at a heating rate of 1.5°C / min, and then kept at a constant temperature for 2.5 hours. Then cool naturally to obtain mesoporous carbon (pore size: 5.8nm).
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