Modified three-dimensional fiber-based aerogel material and preparation method thereof
A fiber-based and aerogel technology is applied in the field of modified three-dimensional fiber-based aerogel materials and their preparation, which can solve the problems of narrow selection of raw materials, no modified fiber-based aerogel materials, and complicated preparation process. , to achieve the effects of good flexibility and connectivity, good structural controllability, and simple preparation process
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Embodiment 1
[0040] A preparation method of a modified three-dimensional fiber-based airgel material, the specific steps are:
[0041] The first step: disperse hydroxypropyl cellulose fibers with an average diameter of 10 μm and an aspect ratio of 4000 in water to form a homogeneous suspension; in the suspension, the mass fraction of fibers is 6%; subsequently, Disperse the titanium dioxide particles into the suspension by physical methods to form a composite suspension with the fibers, the mass fraction of the titanium dioxide particles is 6%, and the average particle size is 10nm;
[0042] Step 2: freeze the suspension or the composite suspension at -30°C for 6 hours to make the suspension form a coagulated block;
[0043] Step 3: Freeze drying and vacuum drying are used to remove the solidified water in the solidified block to form uncrosslinked fiber-based airgel;
[0044] Step 4: subject the uncrosslinked fiber-based airgel to cross-linking treatment by plasma irradiation for 15 minu...
Embodiment 2
[0046] A preparation method of a modified three-dimensional fiber-based airgel material, the specific steps are:
[0047] Step 1: Disperse polylactic acid fibers with an average diameter of 500nm and an aspect ratio of 10,000 in a mixed solvent of water and tert-butanol to form a homogeneous suspension; in the suspension, the mass fraction of fibers is 0.01%; Subsequently, the ferric oxide is physically dispersed in the suspension to form a composite suspension with the fiber, the mass fraction of the ferric oxide particles is 4%, and the average particle diameter is 20nm;
[0048] Step 2: Aging the suspension or the composite suspension at 25°C for 12 hours to make the suspension form a coagulated block;
[0049] The third step: using supercritical drying method to remove the coagulated water and tert-butanol in the coagulated block to form uncrosslinked fiber-based airgel;
[0050] Step 4: The uncrosslinked fiber-based aerogel is subjected to ultrasonic cross-linking treatm...
Embodiment 3
[0052] A preparation method of a modified three-dimensional fiber-based airgel material, the specific steps are:
[0053] The first step: disperse titanium dioxide nanowires / rods with an average diameter of 30nm and an aspect ratio of 1000 in water to form a homogeneous suspension; in the suspension, the mass fraction of fibers is 2%; subsequently, the Activated carbon particles are dispersed into the suspension by physical methods to form a composite suspension with fibers, the mass fraction of activated carbon particles is 50%, and the average particle size is 50 μm;
[0054] Step 2: subjecting the suspension or the composite suspension to a sol treatment, so that the suspension forms a coagulated block;
[0055] The third step: using supercritical drying method to remove the solidified water in the solidified block to form uncrosslinked fiber-based airgel;
[0056] Step 4: The uncrosslinked fiber-based airgel is cross-linked by gamma ray irradiation for 5 minutes to obtain...
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