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In situ preparation of thermoset/clay nanocomposites via thiol-epoxy click chemistry

机译:原位制备热固性/粘土纳米复合材料通过硫醇 - 环氧树脂键入化学

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A series of thermoset/clay nanocomposites are prepared by thiol-epoxy click reaction using commercially available starting compounds at ambient conditions in very good yields. The incorporation and exfoliation of clay nanolayers in the thermoset matrix are confirmed by FT-IR, XRD and TEM analyses. The influence of clay loadings on the thermal and mechanical analyses is investigated and all nanocomposites exhibit improved properties than that of the pristine thermoset. The nanocomposite containing 1% montmorillonite by weight has the most improved mechanical properties due to its highly exfoliated structure resulting in efficient interactions between clay and polymer matrix. A further increase of the clay loading results in the aggregation of clay plates to form intercalated structures leading to deteriorated thermal and mechanical properties of nanocomposites.
机译:通过在环境条件下在非常好的产率下,通过硫醇 - 环氧树脂咔啉点击反应制备一系列热固性/粘土纳米复合材料。 通过FT-IR,XRD和TEM分析证实了热固性基质中粘土纳米层的掺入和剥离。 研究了粘土载荷对热和机械分析的影响,并且所有纳米复合材料都表现出比原始热固性的特性改善。 由于其高度剥离的结构,含有1%蒙脱石的纳米复合材料具有最高的机械性能,导致粘土和聚合物基质之间有效相互作用。 粘土负载的进一步增加导致粘土板的聚集形成嵌入结构,导致纳米复合材料的热和机械性能劣化。

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