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Organo-modified anionic clays into polymer compared to smectite-type nanofiller: Potential applications of the nanocomposites

机译:与蒙脱石型纳米填料相比,将有机改性的阴离子粘土转变成聚合物:纳米复合材料的潜在应用

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The scope of the article is to provide the state of the art concerning the utilization of Layered Double Hydroxide (LDH) materials in polymer nanocomposite and to enlight their potential application and even advantage in comparison to smectite-type materials. A particular attention is paid on the synthetic procedures for the elaboration of polymer nanocomposite taking poly(styrene), poly(imide), poly(methylmethacrylate) and epoxy resin as examples. Lipophilization of the inorganic platelets used to decrease the surface polarity may be achieved either with a surfactant molecule or a surfactant monomer molecule, giving rise to reactive hybrid filler. The state of dispersion of the inorganic platelets, i.e., intercalated versus exfoliated structure is discussed. LDH-based nanocomposites present mechanical properties, such as the tensile modulus and elongation at break, always greater in comparison to virgin polymer, but also compete well with smectite-type filler. For epoxy nanocomposite, the relative gain using LDH nanofiller is superior to smectite-type filler. In both types of nanocomposites using either LDH or smectite-type nanofiller, mixed intercalated-exfoliated structure is generally met. Dispersion of LDH nanoplatelets should emerge well as flame-retardant materials and as polymer electrolyte, but may also find application in topical domains such as in sun radiation absorption.
机译:本文的范围是提供与在聚合物纳米复合材料中使用层状双氢氧化物(LDH)材料有关的最新技术,并启发它们的潜在应用以及与蒙脱石型材料相比甚至具有的优势。以聚合物(苯乙烯),聚(酰亚胺),聚(甲基丙烯酸甲酯)和环氧树脂为例,对合成聚合物纳米复合材料的合成程序给予了特别关注。可以通过表面活性剂分子或表面活性剂单体分子来实现用于降低表面极性的无机血小板的亲脂化,从而产生反应性杂化填料。讨论了无机血小板的分散状态,即插层结构与剥离结构。基于LDH的纳米复合材料具有机械性能,例如拉伸模量和断裂伸长率,与原始聚合物相比,总是更高,但也能与蒙脱石型填料很好地竞争。对于环氧纳米复合材料,使用LDH纳米填料的相对增益要优于蒙脱石型填料。在使用LDH或蒙脱石型纳米填料的两种类型的纳米复合材料中,通常都满足混合插层-剥离结构。 LDH纳米片的分散体应很好地作为阻燃材料和聚合物电解质出现,但也可以在局部领域应用,例如在太阳辐射吸收中。

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