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首页> 外文期刊>ACS applied materials & interfaces >Highly Stretchable and Highly Resilient Polymer-Clay Nanocomposite Hydrogels with Low Hysteresis
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Highly Stretchable and Highly Resilient Polymer-Clay Nanocomposite Hydrogels with Low Hysteresis

机译:具有低滞后的高度可伸缩和高度弹性的聚合物 - 粘土纳米复合水凝胶

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摘要

Highly stretchable and highly resilient polymer-clay nano composite hydrogels were synthesized by in situ polymerization of acrylamide in the presence of pristine montmorillonite (MMT) or chitosan-treated MMT nanoplatelets at an elevated temperature. Both nanocomposite hydrogels can be stretched to a strain of no less than 1290%. The treatment of clay with chitosan improves the tensile strength, elongation at break, and energy at break of the nanocomposite hydrogel by 237%, 102%, and 389%, respectively, due to the strong chitosan-MMT electrostatic interaction and the grafting of polyacrylamide onto chitosan chains. Both hydrogels display excellent resilience with low hysteresis; with a maximum tensile strain of 50%, ultralow hysteresis is found, while, with a maximum strain of 500%, both hydrogels fully recover their original state in just 1 min. The superb resilience of the nanocomposite hydrogels is attributed to the strong interactions within the hydrogels brought by chain branching, multiple hydrogen bonding, covalent bonding, and/or electrostatic force. The hydrogels can be fabricated into different shapes and forms, including microfibers spun using pressurized gyration, which may find a variety of potential applications in particular in healthcare.
机译:通过在升高的温度下在原始蒙脱土(MMT)或壳聚糖处理的MMT纳米克罗特在升高的温度下,通过丙烯酰胺的原位聚合来合成高度拉伸和高度弹性的聚合物 - 粘土纳米复合水凝胶。纳米复合水凝胶均可拉伸至不小于1290%的菌株。由于强壳聚糖-MMT静电相互作用和聚丙烯酰胺的接枝,壳聚糖与壳聚糖的粘土伸缩,伸长率分别提高了纳米复合水凝胶的断裂,伸长率,102%和389%进入壳聚糖链。两种水凝胶都显示出具有低滞后的良好弹性;具有50%的最大拉伸菌株,发现超级滞后,而最大应变为500%,两种水凝胶在仅1分钟内完全恢复原状。纳米复合水凝胶的卓越韧带归因于通过链支化,多氢键合,共价键和/或静电力带来的水凝胶内的强相互作用。水凝胶可以制造成不同的形状和形式,包括使用加压环流的微纤维纺丝,其可以在医疗保健中找到各种潜在的应用。

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