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Novel pH-Sensitive Hydrogel Fibers Based on Hydrolyzed Polyacrylonitrile and Gelatin

机译:基于水解聚丙烯腈和明胶的新型pH敏感水凝胶纤维

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Novel smart hydrogel fibers were prepared from a blend of hydrolyzed polyacrylonitrile (H-PAN) and gelatin (Ge) with various compositions. From the observation by SEM, it was found that H-PAN/Ge hydrogel fibers consisted of a porous structure. The dynamical elongation/contraction behavior was studied in response to a sudden pH change. The significant results obtained were as follows: (i) With an increase in the content of Ge, the hydrogel fibers exhibited excellent reversible pH-sensitive behavior in terms of response times in elongation and contraction. When W<,PAN>: W<,Ge> =3:7, the fibers showed the best response times at 0.95 s (elongation) and 1.14 s (contraction). (ii) The contraction response time of every hydrogel fiber was longer than its elongation response time. (iii) The equilibrium swelling elongation decreased gradually with the content of Ge increasing. These results were found to be explicable in terms of the surface morphology and polyampholytic properties of H-PAN/Ge hydrogel fibers.
机译:新型智能水凝胶纤维是由具有不同组成的水解聚丙烯腈(H-PAN)和明胶(Ge)的混合物制成的。通过SEM观察,发现H-PAN / Ge水凝胶纤维由多孔结构组成。研究了响应于pH突然变化的动态伸长/收缩行为。获得的重要结果如下:(i)随着Ge含量的增加,水凝胶纤维在伸长和收缩的响应时间方面表现出优异的可逆pH敏感性行为。当W <,PAN>:W <,Ge> = 3:7时,纤维在0.95 s(伸长)和1.14 s(收缩)下显示出最佳响应时间。 (ii)每根水凝胶纤维的收缩响应时间长于其伸长响应时间。 (iii)随着Ge含量的增加,平衡溶胀伸长率逐渐降低。已经发现这些结果对于H-PAN / Ge水凝胶纤维的表面形态和多ampholytic性质而言是可解释的。

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