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首页> 外文期刊>Nature reviews neuroscience >Nanostructural Effects in High Cellulose Content Thermoplastic Nanocomposites with a Covalently Grafted Cellulose-Poly(methyl methacrylate) Interface
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Nanostructural Effects in High Cellulose Content Thermoplastic Nanocomposites with a Covalently Grafted Cellulose-Poly(methyl methacrylate) Interface

机译:具有共价嫁接纤维素 - 聚(甲基丙烯酸甲酯)界面的高纤维素含量热塑性纳米复合材料中的纳米结构效应

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A critical aspect in materials design of polymer nanocomposites is the nature of the nanoparticle/polymer interface. The present study investigates the effect of manipulation of the interface between cellulose nanofibrils (CNF) and poly(methyl methacrylate) (PMMA) on the optical, thermal, and mechanical properties of the corresponding nanocomposites. The CNF/PMMA interface is altered with a minimum of changes in material composition so that interface effects can be analyzed. The hydroxyl-rich surface of CNF fibrils is exploited to modify the CNF surface via an epoxide-hydroxyl reaction. CNF/PMMA nanocomposites are then prepared with high CNF content (similar to 38 wt %) using an approach where a porous CNF mat is impregnated with monomer or polymer. The nanocomposite interface is controlled by either providing PMMA grafts from the modified CNF surface or by solvent-assisted diffusion of PMMA into a CNF network (native and modified). The high content of CNF fibrils of similar to 6 nm diameter leads to a strong interface and polymer matrix distribution effects. Moisture uptake and mechanical properties are measured at different relative humidity conditions. The nanocomposites with PMMA molecules grafted to cellulose exhibited much higher optical transparency, thermal stability, and hygro-mechanical properties than the control samples. The present modification and preparation strategies are versatile and may be used for cellulose nanocomposites of other compositions, architectures, properties, and functionalities.
机译:聚合物纳米复合材料的材料设计中的一个关键方面是纳米颗粒/聚合物界面的性质。本研究研究了操纵纤维素纳米纤维(CNF)和聚(甲基丙烯酸甲酯)(PMMA)对应于相应纳米复合材料的光学,热和机械性能之间的界面的影响。 CNF / PMMA接口随着材料组合物的最小变化而改变,以便可以分析界面效果。利用CNF原纤维的富羟基表面通过环氧化物 - 羟基反应来改变CNF表面。然后使用高CNF含量(类似于38wt%)使用多孔CNF垫用单体或聚合物浸渍的方法来制备CNF / PMMA纳米复合材料。通过从改性的CNF表面提供PMMA移植物或通过PMMA的溶剂辅助扩散来控制纳米复合界面,进入CNF网络(天然和改性)。高含量与6nm直径相似的CNF原纤维导致强界面和聚合物基质分布效果。在不同的相对湿度条件下测量湿度吸湿性和机械性能。与纤维素接枝的PMMA分子的纳米复合材料表现出比对照样品更高的光学透明度,热稳定性和Hygro-Inhicallication。本发明的改性和制备策略是通用的,可用于其他组合物,架构,性质和功能的纤维素纳米复合材料。

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