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Inorganic and Organic Hybrid Nanoparticles as Multifunctional Crosslinkers for Rubber Vulcanization with High-Filler Rubber Interaction

机译:无机和有机杂化纳米粒子作为多功能交联剂,用于高填充橡胶相互作用的橡胶硫化

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摘要

Improving the interfacial interaction between rubber and silica nanoparticles, and simultaneously reducing free sulfur and preventing migration and volatilization of a rubber vulcanizing agent, commercial sulfur compound aliphatic ether polysulfide (VA-7) was chemically attached to the silica surface to obtain a functionalized nanoparticle (silica-s-VA7). Functional nanoparticles can not only effectively crosslink rubber without sulfur as a novel vulcanizator, but are also evenly dispersed in the rubber matrix and improve the dispersion of the remaining pristine silica as an interfacial compatibilizer. In addition, the thicker immobilized polymer layer and prominent crosslinking density of SBR nanocomposites simultaneously demonstrate that the novel vulcanizing agent silica-s-VA7 gives rise to significant improvement on the rubber–filler interfacial adhesion on account of the covalent linkages of organic and inorganic interfaces between elastomer and nanofillers. We envisage that this strategy may provide a new avenue to implement high-efficiency design for a multifunctional rubber-vulcanizing agent through an organic and inorganic hybridization mechanism.
机译:为了改善橡胶与二氧化硅纳米粒子之间的界面相互作用,同时减少游离硫并防止橡胶硫化剂的迁移和挥发,将商业化的含硫化合物脂族醚多硫化物(VA-7)化学附着在二氧化硅表面,从而获得功能化的纳米粒子(二氧化硅-s-VA7)。功能性纳米粒子不仅可以有效地交联橡胶而无需使用硫作为新型硫化剂,而且还可以均匀地分散在橡胶基质中,并改善作为界面增容剂的剩余原始二氧化硅的分散性。此外,较厚的固定聚合物层和SBR纳米复合材料的显着交联密度同时表明,由于有机和无机界面的共价键,新型硫化剂硅胶-s-VA7显着改善了橡胶与填料之间的界面粘合力在弹性体和纳米填料之间。我们设想,该策略可能会为通过有机和无机杂化机制对多功能橡胶硫化剂进行高效设计提供一条新途径。

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