首页> 美国卫生研究院文献>Nanoscale Research Letters >Preparation of Ultrahigh Molecular Weight Polyethylene/Graphene Nanocomposite In situ Polymerization via Spherical and Sandwich Structure Graphene/Sio2 Support
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Preparation of Ultrahigh Molecular Weight Polyethylene/Graphene Nanocomposite In situ Polymerization via Spherical and Sandwich Structure Graphene/Sio2 Support

机译:球形和三明治结构的石墨烯/ SiO 2载体原位聚合制备超高分子量聚乙烯/石墨烯纳米复合材料

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摘要

Reduced graphene oxide/SiO2 (RGO/SiO2) serving as a novel spherical support for Ziegler-Natta (Z-N) catalyst is reported. The surface and interior of the support has a porous architecture formed by RGO/SiO2 sandwich structure. The sandwich structure is like a brick wall coated with a graphene layer of concreted as skeleton which could withstand external pressures and endow the structure with higher support stabilities. After loading the Z-N catalyst, the active components anchor on the surface and internal pores of the supports. When the ethylene molecules meet the active centers, the molecular chains grow from the surface and internal catalytic sites in a regular and well-organized way. And the process of the nascent molecular chains filled in the sandwich structure polymerization could ensure the graphene disperse uniformly in the polymer matrix. Compared with traditional methods, the porous spherical graphene support of this strategy has far more advantages and could maintain an intrinsic graphene performance in the nanocomposites.
机译:据报道,还原的氧化石墨烯/ SiO 2(RGO / SiO 2)用作齐格勒-纳塔(Z-N)催化剂的新型球形载体。载体的表面和内部具有由RGO / SiO 2夹心结构形成的多孔结构。三明治结构就像一面砖墙,上面涂有一层石墨烯层,以混凝土为骨架,可以承受外界压力,并为结构提供更高的支撑稳定性。加载Z-N催化剂后,活性成分锚固在载体的表面和内部孔中。当乙烯分子遇到活性中心时,分子链从表面和内部催化位点以规则且组织良好的方式生长。而新生分子链在三明治结构聚合中的填充过程可以确保石墨烯在聚合物基体中均匀分散。与传统方法相比,该策略的多孔球形石墨烯载体具有更多优势,并且可以在纳米复合材料中保持固有的石墨烯性能。

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