互穿聚合物网络
材料科学
自愈水凝胶
光引发剂
乙二醇
聚合物
丙烯酸
肿胀 的
聚合物网络
聚合
预聚物
PEG比率
复合材料
高分子化学
化学工程
聚氨酯
单体
财务
工程类
经济
作者
David Myung,Dale J. Waters,Meredith E. Wiseman,Pierre‐Emile Duhamel,Jaan Noolandi,Christopher N. Ta,Curtis W. Frank
摘要
Interpenetrating polymer networks (IPNs) have been the subject of extensive study since their advent in the 1960s. Hydrogel IPN systems have garnered significant attention in the last two decades due to their usefulness in biomedical applications. Of particular interest are the mechanical enhancements observed in "double network" IPN systems which exhibit nonlinear increases in fracture properties despite being composed of otherwise weak polymers. We have built upon pioneering work in this field as well as in responsive IPN systems to develop an IPN system based on end-linked poly-(ethylene glycol) (PEG) and loosely crosslinked poly(acrylic acid) (PAA) with hydrogen bond-reinforced strain-hardening behavior in water and high initial Young's moduli under physiologic buffer conditions through osmotically induced pre-stress. Uniaxial tensile tests and equilibrium swelling measurements were used to study PEG/PAA IPN hydrogels having second networks prepared with varying crosslinking and photoinitiator content, pH, solids content, and comonomers. Studies involving the addition of non-ionic comonomers and neutralization of the second network showed that template polymerization appears to be important in the formation of mechanically enhanced IPNs.
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