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Hydrophobically Modified Acrylamide Based Hydrogels

机译:疏水改性的丙烯酰胺基水凝胶

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The synthesis of acrylamide based hydrogels incorporating a small proportion of hydrophobia functional groups results in a hydrogel structure with improved mechanical properties. In particular increased mechanical toughness and tensile strength whilst maintaining a relatively high swelling ratio. A method of increasing toughness has been developed by introducing a number of long alkyl chain hydrophobic groups into the hydrophilic structure. These hydrophobic groups create domains of densely clustered polymer chains within the highly swollen hydrogel matrix. Single edged notch tensile tests demonstrate a significant increase in fracture energy when the hydrophobes are able to interact in aqueous solutions compared to gels swollen in organic solvents in which the hydrophobes act independently. Therefore it is speculated that these domains increase energy dissipation around the crack tip during fracture causing an increase in mechanical toughness.
机译:包含少量疏水性官能团的丙烯酰胺基水凝胶的合成产生了具有改善的机械性能的水凝胶结构。特别是在保持相对较高的溶胀率的同时,提高了机械韧性和拉伸强度。通过将许多长烷基链疏水基团引入亲水结构中,已经开发出一种增加韧性的方法。这些疏水基团在高度溶胀的水凝胶基质内形成密集聚集的聚合物链的域。与在疏水溶剂独立起作用的有机溶剂中溶胀的凝胶相比,当疏水试剂能够在水溶液中相互作用时,单边切口拉伸试验表明,断裂能显着增加。因此,推测这些区域在断裂期间增加了裂纹尖端周围的能量耗散,从而导致机械韧性的增加。

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