A kind of flower-shaped porous polyaniline nanomaterial and preparation method thereof
A nano-material, polyaniline technology, applied in the field of wave-absorbing materials, can solve the problems of porous and loose polyaniline composite materials with complex steps, unfavorable industrial application and cost control, uneven molecular weight distribution of in-situ polymerization, etc., to achieve enhanced absorption and Effects of multiple reflections, increased electromagnetic wave receiving area, and light specific gravity
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[0025] A method for preparing a flower-like porous polyaniline nanomaterial, comprising the steps of:
[0026] Step 1) adding L-phenylalanine into deionized aqueous solution for primary dispersion, then adding aniline monomer for secondary dispersion, magnetically stirring and mixing, then adding ammonium persulfate aqueous solution dropwise and stirring at a reduced speed to obtain a mixed reaction solution;
[0027] Step 2) leaving the mixed reaction solution to react at low temperature;
[0028] Step 3) After the reaction, thawing and suction filtration, washing and vacuum freeze-drying to obtain flower-like porous polyaniline nanomaterials.
[0029] In step 1), the molar ratio of L-phenylalanine and aniline monomer is 1-8:24. The molar ratio of L-phenylalanine, aniline monomer and ammonium persulfate is 1:3-24:4-30. The time for magnetic stirring and mixing is 10-60 minutes, and the speed of magnetic stirring and mixing is 100-300 rpm. The dropping rate of the ammonium ...
Embodiment 1
[0033] A preparation method of flower-like porous polyaniline nanomaterials, comprising the following steps:
[0034] 1) Disperse 0.179g of L-phenylalanine in 500ml of deionized water, and disperse evenly with magnetic stirring; then add 0.86g of aniline monomer, and use a low-temperature cooling system to keep the mixed solution at 5°C for 60 minutes with magnetic stirring; 2.34 Disperse 5 g of ammonium persulfate in 500ml of deionized water, cool down to 5°C for pre-cooling; add the ammonium persulfate solution dropwise to the mixed solution of L-phenylalanine and aniline, and control the reaction temperature at 5°C;
[0035] 2) After the dropwise addition, stop the magnetic stirring, take out the magnetic stirring bar, and continue to place the mixed solution system at -5°C for 5 hours of static reaction;
[0036] 3) Remove the supernatant from the product obtained in step 2) and suction filter, wash with deionized water and absolute ethanol until the filtrate is colorless;...
Embodiment 2
[0038] A preparation method of flower-like porous polyaniline nanomaterials, comprising the following steps:
[0039] 1) Disperse 0.269g of L-phenylalanine in 500ml of deionized water, and disperse evenly with magnetic stirring; then add 0.86g of aniline monomer, and use a low-temperature cooling system to keep the mixed solution at 5°C for 60 minutes; Disperse 5 g of ammonium persulfate in 500ml of deionized water, cool down to 5°C for pre-cooling; add the ammonium persulfate solution dropwise to the mixed solution of L-phenylalanine and aniline, and control the reaction temperature at 5°C;
[0040] 2) After the dropwise addition, stop the magnetic stirring, take out the magnetic stirring bar, and continue to place the mixed solution system at -5°C for 5 hours of static reaction;
[0041] 3) Remove the supernatant from the product obtained in step 2) and suction filter, wash with deionized water and absolute ethanol until the filtrate is colorless; then freeze at -10°C for 10...
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