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Silica/clay organo-heterostructures to promote polyethylene-clay nanocomposites by in situ polymerization

机译:二氧化硅/粘土有机异质结构通过原位聚合促进聚乙烯-粘土纳米复合材料

摘要

Two clay organo-heterostructures have been prepared and employed as fillers and catalyst supports for the development of polyethylene-clay nanocomposites. The new silica-clay organo-heterostructures have been obtained from two organoclays modified with tetramethoxysilane. In contrast to related heterostructures reported previously the organic moieties are not removed by heating and their presence intends to confer hydrophobicity to the interlayer region of the clay, even after delamination by hydrolysis-polymerization of the alkoxysilane takes place. These organo-heterostructures were used for preparing clay-polyethylene nanocomposites by in situ polymerizations in which the organo-heterostructures were added together with the metallocene catalyst, and by using the silica-clay as support for the metallocene catalysts. The polymers formed when the organo-heterostructures were used as support for the catalyst have higher molecular weights than the standard polyethylene formed under homogeneous conditions. Moreover, the presence of the inorganic silica network developed in the interlayer region of the organoclay favours the existence of a larger organophilic region in which it is possible to accommodate both the catalyst and the monomer, and hence when the polymer grows in this environment it can assist in the exfoliation of the clay layers inside the polyethylene matrix. The polymer particle morphology improved with the presence of the clay in the polymerization. The molecular weight for support systems presented an increasing ca. 40% compared to neat PE, and by TEM it was found that the clay layers were well dispersed in the PE matrix. © 2012 Elsevier B.V.
机译:已经制备了两种粘土有机杂结构,并用作开发聚乙烯-粘土纳米复合材料的填料和催化剂载体。新的二氧化硅粘土有机异质结构是从用四甲氧基硅烷改性的两种有机粘土中获得的。与先前报道的相关异质结构相反,即使在通过烷氧基硅烷的水解-聚合发生分层之后,也未通过加热除去有机部分,并且它们的存在旨在赋予粘土的夹层区域疏水性。这些有机异质结构用于通过原位聚合(其中有机异质结构与茂金属催化剂一起添加)以及通过使用二氧化硅粘土作为茂金属催化剂的载体来制备粘土-聚乙烯纳米复合材料。当有机杂结构用作催化剂载体时形成的聚合物比在均质条件下形成的标准聚乙烯具有更高的分子量。而且,在有机粘土的夹层区域中形成的无机二氧化硅网络的存在有利于存在较大的亲有机区,在其中可以容纳催化剂和单体,因此当聚合物在该环境中生长时,可以有助于剥离聚乙烯基体内部的粘土层。聚合中粘土的存在改善了聚合物颗粒的形态。支持系统的分子量呈现出增加的约。与纯PE相比,其含量为40%,通过TEM发现,粘土层很好地分散在PE基体中。 ©2012 Elsevier B.V.

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