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首页> 外文期刊>ACS Omega >Preparation and Perfomance of an Aging-Resistant Nanocomposite Film of Binary Natural Polymer–Graphene Oxide
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Preparation and Perfomance of an Aging-Resistant Nanocomposite Film of Binary Natural Polymer–Graphene Oxide

机译:二元天然聚合物-氧化石墨烯抗老化纳米复合薄膜的制备与性能

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摘要

As one of the materials having a bionic structure, nacrelike layered composites, inspired by their natural hybrid structures, have been studied via a variety of approaches. Graphene oxide (GO), which differed from inert graphene, was used as a new building block because it could be readily chemically functionalized. Rather than natural polymers, synthetic polymers were most commonly used to fabricate nacrelike GO–polymer materials. However, naturally occurring polymers complied more easily with the requirements of biocompatibility, biodegradability, and nontoxicity. Here, a simple solution-casting method was used to mimic natural nacre and fabricate a self-assembled and aging-resistant binary natural polymer, (κ-carrageenan (κ-CAR)–Konjac glucomannan (KGM))–GO nanocomposites, with varying GO concentrations. The investigation results revealed that κ-CAR–KGM and GO mostly self-assemble via the formation of intermolecular hydrogen bonds to form a well-defined layered structure. The mechanical properties of the natural polymer–GO films were improved significantly compared to those of pure natural polymer films. With the addition of 7.5 wt % GO, the tensile strength (TS) and Young’s modulus were found to increase by 129.5 and 491.5%, respectively. In addition, the composite films demonstrated high reliability and aging resistance as well as a definite TS after cold and hot shock and ozone aging tests, especially showing a superior ozone resistance. The composite films can potentially be used as biomaterials or packing materials.
机译:作为具有仿生结构的材料之一,已通过多种方法研究了类似珍珠质的层状复合材料,其灵感来自其天然杂化结构。与惰性石墨烯不同的氧化石墨烯(GO)被用作新的构建基块,因为它很容易被化学功能化。合成聚合物而非天然聚合物最常用于制造类似珍珠质的GO聚合物材料。但是,天然存在的聚合物更容易满足生物相容性,生物降解性和无毒的要求。在这里,一种简单的溶液浇铸方法被用来模拟天然珍珠母,并制造出一种自组装且耐老化的二元天然聚合物(κ-卡拉胶(κ-CAR)-魔芋葡甘露聚糖(KGM))-GO纳米复合材料, GO浓度。研究结果表明,κ-CAR-KGM和GO大部分通过分子间氢键的形成而自组装,形成明确的分层结构。与纯天然聚合物薄膜相比,天然聚合物-GO薄膜的机械性能得到了显着改善。加入7.5 wt%的GO后,抗张强度(TS)和杨氏模量分别增加了129.5和491.5%。此外,该复合膜还显示出高可靠性和耐老化性,并且在冷热冲击和臭氧老化测试后均显示出一定的TS,特别是具有优异的耐臭氧性。复合膜可以潜在地用作生物材料或包装材料。

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