An electrospun carbon hybrid polyimide ultra-short nanofiber and its preparation method
A technology of polyimide and nanofibers, which is applied to the chemical characteristics of fibers, circuits, electrical components, etc., can solve the problems of easy broken wires, uneven fiber length, uneven distribution of carbon content in carbon hybrid fibers, etc. Achieve the effect of uniform fiber length, good dispersion and high conductivity
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[0031] A second aspect of the present invention provides a method for preparing the carbon hybrid polyimide ultra-short nanofibers, comprising the steps of:
[0032] (1) Electrospinning the solution of polyamic acid and hydroxyalkyl cellulose blend to form fiber nonwoven fabric;
[0033] (2) cut into strips;
[0034] (3) carbonization;
[0035] (4) Cutting.
[0036] In one embodiment, the preparation method of polyamic acid and hydroxyalkyl cellulose blend solution is as follows:
[0037] (1) Put tetraacid dianhydride monomer, diamine monomer and polar solvent in a reaction kettle, and react at 0-30°C for 1-10 hours to obtain a polyamic acid solution;
[0038] (2) Add hydroxyalkyl cellulose into the polyamic acid solution, mechanically stir and dissolve it evenly at 0-30°C, and dilute the solution with N,N-dimethylacetamide to an absolute viscosity of 1.5-5.5Pa.S, To obtain a blend solution of polyamic acid and hydroxyalkyl cellulose;
[0039] The weight ratio of the tota...
Embodiment 1
[0061] Embodiment 1 of the present invention provides a carbon hybrid polyimide ultra-short nanofiber, the raw material of which includes polyamic acid and hydroxyalkyl cellulose, and the weight ratio of polyamic acid and hydroxyalkyl cellulose is 5:1 ;
[0062] The hydroxyalkyl group in hydroxyalkylcellulose is hydroxymethyl;
[0063] The raw materials for the preparation of polyamic acid include tetraacid dianhydride monomers and diamine monomers, and the molar ratio of tetraacid dianhydride monomers to diamine monomers is 1:1;
[0064] Tetraacid dianhydride monomer is R 1 for
[0065] Diamine monomer is H 2 N-R 2 -NH 2 , R 2 for
[0066] The preparation method of described carbon hybrid polyimide ultra-short nanofiber comprises the steps:
[0067] (1) Electrospinning the solution of polyamic acid and hydroxyalkyl cellulose blend to form fiber nonwoven fabric;
[0068] (2) cut into strips;
[0069] (3) carbonization;
[0070] (4) cutting;
[0071] The prepa...
Embodiment 2
[0081] Embodiment 2 of the present invention provides a carbon hybrid polyimide ultra-short nanofiber, the raw material of which includes polyamic acid and hydroxyalkyl cellulose, and the weight ratio of polyamic acid and hydroxyalkyl cellulose is 9:1 ;
[0082] The hydroxyalkyl group in hydroxyalkylcellulose is hydroxymethyl;
[0083] The raw materials for the preparation of polyamic acid include tetraacid dianhydride monomers and diamine monomers, and the molar ratio of tetraacid dianhydride monomers to diamine monomers is 1:1;
[0084] Tetraacid dianhydride monomer is R 1 for
[0085] Diamine monomer is H 2 N-R 2 -NH 2 , R 2 for
[0086] The preparation method of described carbon hybrid polyimide ultra-short nanofiber comprises the steps:
[0087] (1) Electrospinning the solution of polyamic acid and hydroxyalkyl cellulose blend to form fiber nonwoven fabric;
[0088] (2) cut into strips;
[0089] (3) carbonization;
[0090] (4) cutting;
[0091] The prepa...
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