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The preparation of an elastomer/silicate layer nanocompound with an exfoliated structure and a strong ionic interfacial interaction by utilizing an elastomer latex containing pyridine groups

机译:利用含有吡啶基的弹性体胶乳制备具有剥离结构和强离子界面相互作用的弹性体/硅酸盐层纳米化合物

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摘要

A great variety of polymer/layered silicate (PLS) nanocomposites have been reported, however, there are few exfoliated PLS nanocomposites and their inorganic–organic interfaces are still a great problem, especially for the elastomers. In this research, a kind of exfoliated elastomer/silicate layer nanocompound was prepared and proved by XRD and TEM, in which 10 phr Na+-montmorillonite was dispersed in butadiene–styrene–vinyl pyridine rubber by latex compounding method with acidic flocculants. Moreover, a dynamic mechanical thermal analyzer (DMTA) suggested a strong interfacial interaction (interaction parameter BH = 4.91) between the silicate layers and macromolecules in addition to the weak inorganic–organic interfacial interaction, and solid state 15N NMR indicated the formation of a strong ionic interface through the acidifying pyridine. Subsequently, a remarkable improvement of the dispersing morphology, mechanical performance and gas barrier property appeared, compared to that using calcium ion flocculants. This supports the formation of an exfoliated structure and an improved interfacial interaction.
机译:已经报道了各种各样的聚合物/层状硅酸盐(PLS)纳米复合材料,但是,剥落的PLS纳米复合材料很少,而且它们的无机-有机界面仍然是一个很大的问题,特别是对于弹性体。在这项研究中,制备了一种剥落的弹性体/硅酸盐层纳米化合物,并通过XRD和TEM进行了证明,其中10 phr Na +-蒙脱土通过酸性絮凝剂的乳胶复合法分散在丁二烯-苯乙烯-乙烯基吡啶橡胶中。此外,动态机械热分析仪(DMTA)提出,除了弱的无机-有机界面相互作用外,硅酸盐层与大分子之间还具有很强的界面相互作用(相互作用参数BH = 4.91),固态15N NMR表明形成了强的离子界面通过酸化吡啶。随后,与使用钙离子絮凝剂相比,分散形态,机械性能和气体阻隔性显着改善。这支持剥离结构的形成和改善的界面相互作用。

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