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Ionically cross-linked triblock copolymer hydrogels with high strength

机译:高强度离子交联三嵌段共聚物水凝胶

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摘要

High strength hydrogels were made by ionically cross-linking the polyelectrolyte midblock of a self-assembled, amphiphilic triblock copolymer network. The polymer backbone consisted of glassy, spherical domains of poly(methyl methacrylate) (PMMA) end blocks bridged by solvated poly(methacrylic acid) (PMAA) midblocks, whose assembly was induced by vapor phase solvent exchange. Ionic cross-linking was achieved by submersion of polymer gels into pH-buffered solutions of divalent acetates (Zn, Ca, Ni, Co, Cu). Consequent mechanical characterization by tensile and indentation testing methods revealed a dependence of mechanical behavior on ion absorption, pH, and cation identity with orders of magnitude increases in Youngs modulus between cross-linked and noncross-linked states. These materials exhibit a degree of reversible energy dissipation with mechanical responses reminiscent of tough double network hydrogels and fracture stresses up to ~1 MPa.
机译:高强度水凝胶是通过自交两亲三嵌段共聚物网络的聚电解质中嵌段进行离子交联而制得的。聚合物主链由聚甲基丙烯酸甲酯(PMMA)端嵌段的玻璃状球形域组成,该端域由溶剂化的聚(甲基丙烯酸)(PMAA)中间嵌段桥接,其组装是通过气相溶剂交换诱导的。离子交联是通过将聚合物凝胶浸入二价乙酸盐(Zn,Ca,Ni,Co,Cu)的pH缓冲溶液中实现的。随后通过拉伸和压痕测试方法进行的机械表征揭示了机械行为对离子吸收,pH和阳离子特性的依赖性,其在交联和非交联状态之间的杨氏模量增加了几个数量级。这些材料表现出一定程度的可逆能量耗散,其机械响应使人联想到坚韧的双网状水凝胶,断裂应力高达〜1 MPa。

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