Preparation method for continuous micron-size polyethylene glycol diacrylate (PEGDA) hydrogel fiber
A hydrogel, micron-scale technology, applied in the direction of fiber chemical characteristics, spinning solution preparation, wet spinning method, etc., can solve the problems of easy dissociation, difficult to control the diameter, and continuous collection of hydrogel fibers, and achieve uniformity effect of diameter
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Embodiment 1
[0029] Weigh 2 g of deionized water, 8 g of PEGDA (Mw=300), and 0.03 g of IRGACURE2959 at room temperature, and magnetically stir for 6 h in the dark at room temperature until IRGACURE2959 is completely dissolved to obtain a spinning solution. A capillary with an inner diameter of 0.6 mm and a length of 2 cm is used as a spinning nozzle, and a propulsion pump is used to pass the spinning solution into a deionized water bath at a propulsion rate of 2 ml / h, and the spinning nozzle is immersed in the water bath 0.5 cm below the liquid surface. Set a 90° ultraviolet point light source at a distance of 8 mm from the spinneret, with a wavelength of 400 mm, and a spot distance of 5 mm from the spinning solution. The linear speed of the roller with a diameter of 6 cm was set to 406.9 m / h, and the nascent hydrogel fibers were wound and collected to obtain continuous micron-sized hydrogel fibers.
[0030] figure 1 , figure 2 is the infrared spectrum of the PEGDA hydrogel, figure 2...
Embodiment 2
[0034] Weigh 6 g of deionized water, 4 g of PEGDA (Mw=500), and 0.012 g of IRGACURE2959 at room temperature, and magnetically stir for 6 h in the dark at room temperature until IRGACURE2959 is completely dissolved to prepare a spinning solution. Use deionized water as the coagulation bath, and a capillary with an inner diameter of 1.5 mm and a length of 2 cm as the spinning nozzle. The spinning solution is passed into the coagulation bath by a propulsion pump at a propulsion rate of 3 ml / h, and the spinning nozzle is immersed in the water bath 1.5 cm below the liquid surface. Set a 60° ultraviolet point light source at a distance of 7 mm from the spinneret, with a wavelength of 200 mm, and a spot distance of 1 cm from the spinning solution. The line speed of the roller with a diameter of 5 cm is set to 800 m / h, and the nascent hydrogel fibers are wound and collected to obtain continuous micron-sized hydrogel fibers.
Embodiment 3
[0036] Weigh 8 g of deionized water, 2 g of PEGDA (Mw=550), and 0.02 g of IRGACURE2959 at room temperature, and magnetically stir for 6 h in the dark at room temperature until IRGACURE2959 is completely dissolved to prepare a spinning solution. Using deionized water as the coagulation bath, a capillary with an inner diameter of 1.0 mm and a length of 2 cm as the spinning nozzle, the spinning liquid is passed into the coagulation bath by a propulsion pump at a propulsion rate of 10 ml / h, and the spinning nozzle is immersed 2 cm below the surface of the water bath. Set a 90° ultraviolet point light source at a distance of 5 mm from the spinneret, with a wavelength of 325 mm, and a spot distance of 8 mm from the spinning solution. The linear speed of the drum with a diameter of 8 cm was set to 508.7 m / h, and the nascent hydrogel fibers were wound and collected to obtain continuous micron-sized hydrogel fibers.
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