Method of preparing organic macromolecule nano tube from sodium sulfide and perchlorobenzoacenaphthylene
An organic polymer, benzoacenaphthene technology, applied in the field of organic polymer nanotubes, can solve the problems of cumbersome operation process, inability to synthesize in one step, unfavorable for large-scale synthesis, etc., and achieves high reaction efficiency, good application value, and clean reaction process. pollution-free effect
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Embodiment 1
[0022] Dissolve 78mg of sodium sulfide nonahydrate in 16ml of absolute ethanol to obtain solution A, add 20mg of perchlorinated benzoacenaphthylene to 0.5ml of toluene to obtain mixture B, ultrasonicate for 30s, add the above obtained solution A and mixture B into a 18ml volume In the PTFE lining, ultrasonically for 30s, put the PTFE lining in the reaction kettle and heat it to 180°C, keep the temperature constant for 72h, then take out the PTFE lining after cooling to room temperature, and put the PTFE lining in the lining The mixture was poured out, centrifuged with a 5ml centrifuge tube, and the obtained solid product was washed 5 times with toluene, ethanol and water successively to obtain the target product.
[0023] From the SEM images (see figure 1 ) It can be seen that the length of the obtained organic polymer nanotubes is mostly from a few microns to more than ten microns. From the TEM images (see figure 1 It can be seen that the diameter of the obtained organic po...
Embodiment 2
[0025] Dissolve 78mg of sodium sulfide nonahydrate in 16ml of absolute ethanol to obtain solution A, add 20mg of perchlorinated benzoacenaphthylene to 1ml of cyclohexane to obtain mixture B, ultrasonicate for 30s, add the above-mentioned solution A and mixture B to a volume of 18ml Among the polytetrafluoroethylene lining, ultrasonically for 30s, put the polytetrafluoroethylene lining in the reaction kettle and heat it to 180°C, keep the temperature constant for 72h, then take out the polytetrafluoroethylene lining after cooling to room temperature, and put the polytetrafluoroethylene lining in the lining The mixture was poured out, centrifuged with a 5ml centrifuge tube, and the obtained solid product was washed 5 times with toluene, ethanol and water successively to obtain the target product.
[0026] From the SEM images (see figure 2 ) It can be seen that the morphology of organic polymers prepared with cyclohexane and ethanol as solvents is similar to that of polymer nano...
Embodiment 3
[0028] Dissolve 78mg of sodium sulfide nonahydrate in 16ml of absolute ethanol to obtain solution A, dissolve 20mg of perchlorinated benzoacenaphthylene in 1ml of tetrahydrofuran to obtain mixture B, ultrasonicate for 30s, add the above-mentioned solution A and mixture B to a volume of 18ml polytetrafluoroethylene In the vinyl fluoride lining, ultrasonically for 30s, put the polytetrafluoroethylene lining in the reactor and heat it to 180°C, keep the temperature at a constant temperature for 72h, then take out the polytetrafluoroethylene lining after cooling to room temperature, and put the mixture in the lining Pour it out, and centrifuge it with a 5ml centrifuge tube, and wash the obtained solid product with toluene, ethanol and water 5 times respectively to obtain the target product.
[0029] From the SEM images (see image 3 ) It can be seen that the morphology of organic polymers prepared with cyclohexane and ethanol as solvents is similar to that of polymer nanotubes pre...
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