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Polymer-clay nanocomposites obtained by solution polymerization of vinyl benzyl triammonium chloride in the presence of advanced functionalized clay

机译:在高级功能化粘土存在下通过乙烯基苄基三铵氯化物的溶液聚合获得的聚合物-粘土纳米复合材料

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Polymer-clay nanocomposites were synthesized by solution polymerization method using advanced functionalized clay and vinyl benzyl trimethyl ammonium chloride as monomer. First stage consisted in the silylation of a commercial organo-modified clay-Cl 20A using alkoxysilanes with different chain lengths. In the second step, the synthesis and characterization of polymer-nanocomposites were followed. To evaluate the clay functionalization process as well as the final polymer-clay products, thermogravimetric,X-ray diffraction, dynamic light scattering, Fourier transform infrared spectroscopy and three test liquid contact angles analyses were used. The loss of ammonium ions from commercial clay, the grafting degree, the lengths and the nature of alkyl chain influence the dispersion of the advanced modified clay into the polymer solution and, furthermore, the properties of the final polymer-clay nanocomposite film.
机译:以高级功能化粘土和乙烯基苄基三甲基氯化铵为单体,通过溶液聚合法合成了聚合物-粘土纳米复合材料。第一步包括使用具有不同链长的烷氧基硅烷对市售的有机改性粘土-Cl 20A进行甲硅烷基化。第二步,进行聚合物-纳米复合材料的合成和表征。为了评估粘土的功能化过程以及最终的聚合物粘土产品,使用了热重分析,X射线衍射,动态光散射,傅立叶变换红外光谱和三种测试液体接触角分析。商业粘土中铵离子的流失,接枝度,烷基链的长度和性质影响高级改性粘土在聚合物溶液中的分散性,进而影响最终聚合物-粘土纳米复合膜的性能。

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