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Functionalized Halloysite Nanotubes–Silica Hybrid for Enhanced Curing and Mechanical Properties of Elastomers

机译:功能化的埃洛石纳米管-硅杂化物增强弹性体的固化和机械性能

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摘要

Vulcanization and reinforcement are critical factors in governing the ultimate practical applications of elastomer composites. Here we achieved a simultaneous improvement of curing and mechanical properties of elastomer composites by the incorporation of a functionalized halloysite nanotubes–silica hybrid (HS-s-M). Typically, HS-s-M was synthesized by 2-mercapto benzothiazole (M) immobilized on the surface of halloysite nanotubes–silica hybrid (HS). It was found that the HS-s-M uniformly dispersed in the styrene-butadiene rubber (SBR) matrix, offering more opportunity for M molecules to communicate with rubber. In addition, the physical loss of accelerator M from migration and volatilization was efficiently suspended. Therefore, SBR/HS-s-M composites showed a lower curing activation energy and a higher crosslinking density than SBR/HS composites. Moreover, a stronger interfacial interaction between HS-s-M and SBR was formed by the cross-linking reaction, giving a positive contribution to the eventual mechanical properties. The possible vulcanization and reinforcement mechanisms of SBR/HS-s-M composites were also analyzed in detail.
机译:硫化和补强是决定弹性体复合材料最终实际应用的关键因素。在这里,我们通过掺入功能化的埃洛石纳米管-二氧化硅杂化材料(HS-s-M),同时提高了弹性体复合材料的固化和机械性能。通常,HS-s-M是由固定在埃洛石纳米管-二氧化硅杂化物(HS)表面的2-巯基苯并噻唑(M)合成的。结果发现,HS-s-M均匀分散在丁苯橡胶(SBR)基质中,为M分子与橡胶通讯提供了更多机会。此外,加速剂M由于迁移和挥发而物理损失被有效地抑制。因此,与SBR / HS复合材料相比,SBR / HS-s-M复合材料显示出更低的固化活化能和更高的交联密度。此外,通过交联反应在HS-s-M和SBR之间形成了更强的界面相互作用,从而为最终的机械性能做出了积极贡献。还详细分析了SBR / HS-s-M复合材料可能的硫化和增强机理。

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