Preparation method of porous carbon nanosphere with controllable diameter
A nanosphere, porous carbon technology, applied in nanocarbon, nanotechnology for materials and surface science, nanotechnology, etc., can solve the problem of low output of carbon nanospheres, and achieve the effect of good monodispersity and uniform diameter
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Embodiment 1
[0012] Measure according to the mass ratio of phloroglucinol: terephthalaldehyde: water = 1:0.7:300, and mix well. Under the stirring speed of 400 rpm, react at 70° C. for 15 minutes, and cool to room temperature to obtain a phenolic prepolymer solution. Then measure according to the mass ratio of resorcinol:formaldehyde solution:ammonia water=1:1.5:0.4, and mix evenly. The mixed solution was slowly added dropwise to the phenolic prepolymer solution, wherein the mass ratio of the mixed solution to the phenolic prepolymer solution was 1:40, and after the addition was completed, it was reacted at a stirring speed of 400 rpm for 24 hours, and then Hydrothermal treatment was performed at 100°C for 24 hours, and the obtained product was dried at 40°C for 12 hours to obtain polymer nanospheres. In a tube furnace, under the protection of inert gas, the polymer nanospheres were heated to 600 °C for carbonization at a heating rate of 0.5 °C / min, and finally the temperature was natural...
Embodiment 2
[0015] Measure according to the mass ratio of phloroglucinol: terephthalaldehyde: water = 1:0.9:340, and mix well. Under the stirring speed of 1000 rpm, react at 70° C. for 240 minutes, and cool to room temperature to obtain a phenolic prepolymer solution. Then measure according to the mass ratio of resorcinol:formaldehyde solution:ammonia water=1:1.8:0.45, and mix evenly. The mixed solution was slowly added dropwise to the phenolic prepolymer solution, wherein the mass ratio of the mixed solution to the phenolic prepolymer solution was 1:45, and after the addition was completed, it was reacted at a stirring speed of 1000 rpm for 24 hours, and in Hydrothermal treatment at 100° C. for 24 hours, and drying of the obtained product at 100° C. for 2 hours to obtain polymer nanospheres. In a tube furnace, under the protection of inert gas, the polymer nanospheres were heated to 1000 °C for carbonization at a heating rate of 10 °C / min, and finally the temperature was naturally coole...
Embodiment 3
[0017] Measure according to the mass ratio of phloroglucinol: terephthalaldehyde: water = 1:0.8:320, and mix well. Under the stirring speed of 600 rpm, react at 70° C. for 30 minutes, and cool to room temperature to obtain a phenolic prepolymer solution. Then measure according to the mass ratio of resorcinol:formaldehyde solution:ammonia water=1:1.6:0.42, and mix evenly. The mixed solution was slowly added dropwise to the phenolic prepolymer solution, wherein the mass ratio of the mixed solution to the phenolic prepolymer solution was 1:43, and after the addition was completed, it was reacted at a stirring speed of 600 rpm for 24 hours, and then Hydrothermal treatment was performed at 100°C for 24 hours, and the obtained product was dried at 80°C for 8 hours to obtain polymer nanospheres. In a tube furnace, under the protection of inert gas, the polymer nanospheres were heated to 800 °C for carbonization at a heating rate of 5 °C / min, and finally the temperature was naturally...
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