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首页> 外文期刊>Biomacromolecules >Bioinspired and Highly Oriented Clay Nanocomposites with a Xyloglucan Biopolymer Matrix: Extending the Range of Mechanical and Barrier Properties
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Bioinspired and Highly Oriented Clay Nanocomposites with a Xyloglucan Biopolymer Matrix: Extending the Range of Mechanical and Barrier Properties

机译:具有木葡聚糖生物聚合物基体的生物启发和高度定向的粘土纳米复合材料:扩展了机械性能和阻隔性能的范围

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摘要

The development of clay bionanocomposites requires processing routes with nanostructural control. Moreover, moisture durability is a concern with water-soluble biopolymers. Here, oriented bionanocomposite coatings with strong in-plane orientation of clay platelets are for the first time prepared by continuous water-based processing. Montmorillonite (MTM) and a "new" unmodified biological polymer (xyloglucan (XG)) are combined. The resulting nanocomposites are characterized by FE-SEM, TEM, and XRD. XG adsorption on MTM is measured by quartz crystal microbalance analysis. Mechanical and gas barrier properties are measured, also at high relative humidity. The reinforcement effects are modeled. XG dimensions in composites are estimated using atomistic simulations. The nanostructure shows highly oriented and intercalated clay platelets. The reinforcement efficiency and effects on barrier properties are remarkable and are likely to be due to highly oriented and well-dispersed MTM and strong XG—MTM interactions. Properties are well preserved in humid conditions and the reasons for this are discussed.
机译:粘土仿生纳米复合材料的开发需要具有纳米结构控制的加工路线。而且,水溶性生物聚合物的耐湿性是一个问题。在这里,首次通过连续的水基加工制备了具有强的面内取向的粘土薄片的取向的纳米复合复合涂料。将蒙脱土(MTM)和“新的”未改性生物聚合物(木葡聚糖(XG))结合在一起。所得纳米复合材料通过FE-SEM,TEM和XRD表征。 XG在MTM上的吸附通过石英晶体微量天平分析来测量。在较高的相对湿度下也要测量机械和气体阻隔性能。对加固效果进行建模。复合材料中的XG尺寸是使用原子模拟估算的。纳米结构显示出高度取向和嵌入的粘土薄片。增强效率和对阻隔性能的影响非常显着,这很可能是由于高度定向和分散良好的MTM和强大的XG-MTM相互作用所致。在潮湿条件下可以很好地保存属性,并讨论其原因。

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