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Double dimensionally ordered nanostructures: toward a multifunctional reinforcing nanohybrid for epoxy resin

机译:二维有序纳米结构:面向环氧树脂的多功能增强纳米复合材料

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Monodisperse 0D nano-TiO2, namely a ball cactus, with a BET surface area of 280 m2 g?1 and a pore volume of 1.0 cm3 g?1 was firstly synthesized by a solvothermal method. A double dimensionally ordered nanostructure filler system consisting of a 0D ball cactus and 2D layered MMT was constructed. The comprehensive performance of TiO2/MMT/EP nanocomposites was examined. The properties of the corresponding TiO2/MMT/EP nanocomposites, including mechanical properties, thermal stabilities, dielectric properties and surface free energies strongly depended on the loading of the double dimensional nanofillers. Our results demonstrate the potential of double dimensional synergism of 0D TiO2/2D MMT as a multifunctional reinforcement in polymeric composites. These results help to elucidate the complex interactions between nanostructures and polymer matrices, and flexible control over this multi-dimensional synergies concept could contribute to the development of adaptable structural materials for advanced applications.
机译:BET表面积为280 m 2 g的单分散0D纳米TiO 2 即球形仙人掌 ?1 和1.0 cm 3 g ?1 首先通过溶剂热法合成。构建了二维有序的纳米结构填充物系统,该系统由0D球形仙人掌和2D层状MMT组成。研究了TiO 2 / MMT / EP纳米复合材料的综合性能。相应的TiO 2 / MMT / EP纳米复合材料的性能,包括机械性能,热稳定性,介电性能和表面自由能,在很大程度上取决于二维纳米填料的负载量。我们的结果证明了0D TiO 2 / 2small MMT在聚合物复合材料中作为多功能增强材料的二维协同作用的潜力。这些结果有助于阐明纳米结构与聚合物基质之间的复杂相互作用,并且对该多维协同概念的灵活控制可能有助于开发适用于高级应用的结构材料。

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