Electrospinning membrane with adsorption and filtration function and preparation method and applications thereof
An electrospinning and voltage technology is applied in the field of haze protective film materials and their preparation, which can solve the problems of low adsorption rate and poor air permeability, and achieve the effects of long shelf life, low cost and high filtration efficiency.
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Embodiment 1
[0047] In this embodiment, the haze protective electrospun membrane is prepared by the following method, which specifically includes the following steps:
[0048] 1. Dissolve 2.2g polylactic acid-glycolic acid in 20mL hexafluoroisopropanol solvent, stir magnetically at room temperature for 12h, and obtain a spinning solution with a polymer concentration of 11% (w / v), wherein polylactic acid-glycolic acid and The mass ratio of polycaprolactone is 1:0.
[0049] 2. The solution was electrospun, with a stainless steel roller as the receiving device, the voltage was 20KV, the receiving distance was 20cm, the spinning liquid inflow rate was 10mL / h, and the spinning was 5h. A film with a thickness of about 250 μm was obtained.
[0050] 3. Freeze-dry the obtained fiber film in a refrigerator for 8 hours, and then dry it in a vacuum oven for 72 hours to ensure that the residual solvent is fully volatilized.
[0051] Scanning electron microscope observation is carried out to the elect...
Embodiment 2
[0055] In this embodiment, the haze protective electrospun membrane is prepared by the following method, which specifically includes the following steps:
[0056] 1. Dissolve 3.85g polylactic acid-glycolic acid and 1.65g polycaprolactone in 50ml hexafluoroisopropanol solvent, stir magnetically at room temperature for 12h to obtain a spinning solution with a polymer concentration of 11% (w / v), The mass ratio of polylactic acid-glycolic acid to polycaprolactone is 7:3.
[0057] 2. The solution was electrospun, with a stainless steel flat table as the receiving device, the voltage was 20KV, the receiving distance was 20cm, the spinning liquid inflow rate was 10mL / h, and the spinning was 5h. A film with a thickness of about 250 μm was obtained.
[0058] 3. Freeze-dry the obtained fiber film in a refrigerator for 8 hours, and then dry it in a vacuum oven for 72 hours to ensure that the residual solvent is fully volatilized.
[0059] Scanning electron microscope observation is car...
Embodiment 3
[0063] In this embodiment, the haze protective electrospun membrane is prepared by the following method, which specifically includes the following steps:
[0064] 1. Dissolve 3.3g polylactic acid-glycolic acid and 2.2g polycaprolactone in 50mL hexafluoroisopropanol solvent, stir magnetically at room temperature for 12h, and obtain a spinning solution with a polymer concentration of 11% (w / v), The mass ratio of polylactic acid-glycolic acid to polycaprolactone is 6:4.
[0065] 2. The solution was electrospun, with a stainless steel flat table as the receiving device, the voltage was 20KV, the receiving distance was 20cm, the spinning liquid inflow rate was 10mL / h, and the spinning was 5h. A film with a thickness of about 250 μm was obtained.
[0066] 3. Freeze-dry the obtained fiber film in a refrigerator for 8 hours, and then dry it in a vacuum oven for 72 hours to ensure that the residual solvent is fully volatilized.
[0067] Scanning electron microscope observation is car...
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