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Polymer nanocomposites based on silylated-montmorillonite: A review

机译:基于甲硅烷基甲酸甲醚的聚合物纳米复合材料:综述

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摘要

Recently, polymer nanocomposite reinforced with well-dispersed layered silicate, typically montmorillonite have received much attention in both academic and industrial research due to their promising and peculiar features compared to traditional composite materials. However, owing to the incompatibility arising from the hydrophilic characteristics of the pristine montmorillonite in nature, surface modification of montmorillonite becomes indispensable in order to enhance its interfacial interaction with the organic phase. Herein, a type of covalent organic functionalization approach is reviewed, namely silylation to coat silane coupling agents on the clay, considered to be a salient aspect to improve nanofiller dispersion in the polymeric matrix, besides the processing method and nature of the polymer. Consequently, emphasis is placed on possible factors that affect the degree of surface modification during silylation, such as the silane configuration, reaction conditions and the nature of the solvent system. Moreover, the effect of the impregnation of silylated-fillers in various macromolecular matrices is summarized and compiled based on recent collected literature where their processing, morphologies, properties and future prospects are specifically detailed and discussed in this review.
机译:近年来,与传统的复合材料相比,分散性良好的层状硅酸盐(典型的蒙脱土)增强聚合物纳米复合材料因其具有良好的应用前景和独特的性能而受到学术界和工业界的广泛关注。然而,由于天然蒙脱土的亲水性所导致的不相容性,为了增强其与有机相的界面相互作用,蒙脱土的表面改性变得必不可少。本文综述了一种共价有机功能化方法,即硅烷化在粘土上涂覆硅烷偶联剂,除了聚合物的加工方法和性质外,这被认为是改善聚合物基体中纳米填料分散性的一个显著方面。因此,重点放在影响硅烷化过程中表面改性程度的可能因素上,例如硅烷构型、反应条件和溶剂系统的性质。此外,根据最近收集的文献,总结和汇编了硅烷化填料在各种大分子基质中的浸渍效果,并对其加工、形态、性能和未来前景进行了详细介绍和讨论。

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