Porous graphene fiber nonwoven fabric and preparation method thereof
A graphene fiber and porous graphene technology, which is applied in graphene, fiber raw material processing, synthetic cellulose/non-cellulose material pulp/paper, etc., can solve the problems of restricting the performance of non-woven electrodes and low electrochemical activity , to achieve the effect of simple preparation method and wide application prospect
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Embodiment 1
[0025] (1) The graphene oxide / water solution with a concentration of 5 mg / mL was used as the spinning solution, and the calcium chloride / water / ethanol mixture (mass ratio 20:300:100) was used as the coagulation bath for continuous wet spinning.
[0026] (2) The obtained graphene oxide fibers were left at room temperature for 12 hours, and then vacuum-dried at a temperature of 80° C. for 3 hours.
[0027] (3) Using a high-speed shear mixer to crush the dried graphene oxide fibers in deionized water to obtain a swollen graphene oxide short fiber dispersion.
[0028] (4) Deposit the graphene oxide gel short fibers on the filter screen by using a vacuum filtration device, and keep the suction filtration for 10 minutes after the surface solvent is drained.
[0029] (5) Use liquid nitrogen to freeze the graphene oxide fiber filter cake and freeze-dry to obtain a porous graphene oxide fiber nonwoven fabric.
[0030] (6) Reducing the dried graphene oxide fiber non-woven fabric with h...
Embodiment 2
[0033] (1) The graphene oxide / N, N-dimethylformamide solution with a concentration of 5 mg / mL was used as the spinning solution, and ethyl acetate was used as the coagulation bath for continuous wet spinning.
[0034] (2) The obtained graphene oxide fiber was placed at room temperature for 14 hours, and then vacuum-dried at 60° C. for 3 hours.
[0035] (3) Using a high-speed shear mixer to crush the dried graphene oxide fibers in deionized water to obtain a swollen graphene oxide short fiber dispersion.
[0036] (4) Utilize the vacuum filtration device to deposit the graphene oxide gel short fibers on the filter screen, and keep the suction filtration for 15 minutes after the surface solvent is drained.
[0037] (5) Use liquid nitrogen to freeze the graphene oxide fiber filter cake and freeze-dry to obtain a porous graphene oxide fiber nonwoven fabric.
[0038] (6) The dried graphene oxide fiber non-woven fabric is thermally reduced at 800°C.
[0039] After the above steps, ...
Embodiment 3
[0041] (1) The graphene oxide / N, N-dimethylformamide solution with a concentration of 15 mg / mL was used as the spinning solution, and ethyl acetate was used as the coagulation bath for continuous wet spinning.
[0042] (2) The obtained graphene oxide fiber was placed at room temperature for 12 hours, and then vacuum-dried at 100° C. for 3 hours.
[0043] (3) Using a high-speed shear mixer to crush the dried graphene oxide fibers in deionized water to obtain a swollen graphene oxide short fiber dispersion.
[0044] (4) Utilize the vacuum filtration device to deposit the graphene oxide gel short fibers on the filter screen, and keep the suction filtration for 50 minutes after the surface solvent is drained.
[0045] (5) Use liquid nitrogen to freeze the graphene oxide fiber filter cake and freeze-dry it.
[0046] After the above steps, the obtained graphene fiber non-woven fabric has less porous structure and a specific surface area of 83m 2 / g.
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