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首页> 外文期刊>ACS applied materials & interfaces >Constructing Covalent Interface in Rubber/Clay Nanocomposite by Combining Structural Modification and Interlamellar Silylation of Montmorillonite
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Constructing Covalent Interface in Rubber/Clay Nanocomposite by Combining Structural Modification and Interlamellar Silylation of Montmorillonite

机译:结合蒙脱土的结构改性和层间硅烷化作用在橡胶/粘土纳米复合材料中构建共价界面

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摘要

Strong interfacial interaction and nanodispersion are necessary for polymer nanocomposites with expectations on mechanical performance. In this work, montmorillonite (MMT) was first structurally modified by acid treatment to produce more silanol groups on the layer surface. This was followed by chemical modification of γ-methacryloxy propyl trimethoxysilane molecule (KH570) through covalent grafting with the silanol groups. ~(29)Si and ~(27)Al magic angle spinning (MAS) NMR results revealed the microstructural changes of MMT after acid treatment and confirmed the increase of silanol groups on acid-treated MMT surfaces. Thermogravimetric analysis indicated an increase in the grafted amount of organosilane on the MMT surface. X-ray dim-action (XRD) showed that the functionalization process changed the highly ordered stacking structure of the MMT mineral into a highly disordered structure, indicating successful grafting of organosilane to the interlayer surface of the crystalline sheets. The styrene—butadiene rubber (SBR)/MMT nanocomposites were further prepared by co-coagulating with SBR latex and grafted-MMT aqueous suspension. During vulcanization, a covalent interface between modified MMT and rubber was established through peroxide-radical-initiated reactions, and layer aggregation was effectively prevented. The SBR/MMT nanocomposites had highly and uniformly dispersed MMT layers, and the covalent interfacial interaction was finally achieved and exhibited high performance.
机译:对于具有机械性能预期的聚合物纳米复合材料,强界面相互作用和纳米分散是必需的。在这项工作中,首先通过酸处理对蒙脱石(MMT)进行了结构改性,以在层表面产生更多的硅烷醇基团。随后通过与硅烷醇基团共价接枝对γ-甲基丙烯酰氧基丙基三甲氧基硅烷分子(KH570)进行化学修饰。 〜(29)Si和〜(27)Al幻角旋转(MAS)NMR结果表明,酸处理后MMT的微观结构发生了变化,并证实了酸处理的MMT表面硅烷醇基团的增加。热重分析表明MMT表面上有机硅烷的接枝量增加。 X射线调暗作用(XRD)显示功能化过程将MMT矿物的高度有序的堆积结构改变为高度无序的结构,表明有机硅烷已成功接枝到结晶片的夹层表面。通过与SBR胶乳和接枝的MMT水性悬浮液共凝聚,进一步制备了丁苯橡胶(SBR)/ MMT纳米复合材料。在硫化过程中,通过过氧化物自由基引发的反应,在改性MMT和橡胶之间建立了共价界面,并有效防止了层凝集。 SBR / MMT纳米复合材料具有高度均匀分布的MMT层,最终实现了共价界面相互作用并表现出较高的性能。

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