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Structural behavior of cylindrical polystyrene-block-poly(ethylene-butylene)-block-polystyrene (SEBS) triblock copolymer containing MWCNTs: on the influence of nanoparticle surface modification

机译:含碳纳米管的圆柱形聚苯乙烯-嵌段-聚(乙烯-丁烯)-嵌段-聚苯乙烯(SEBS)三嵌段共聚物的结构行为:对纳米粒子表面改性的影响

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摘要

In this work, the influence of carbon nanotubes (CNTs) on the self-assembly of nanocomposite materials made of cylinder-forming polystyrene-block-poly(ethylene- butylene)-block-polystyrene (SEBS) is studied. CNTs are modified with polystyrene (PS) brushes by surface-initiated atom transfer radical polymerization to facilitate both their dispersion and the orientation of neighboring PS domains of the block copolymer (BCP) along modified CNT-PS. Dynamic rheology is utilized to probe the viscoelastic and thermal response of the nanoscopic structure of BCP nanocomposites. The results indicate that nonmodified CNTs increase the BCP microphase separation temperature because of BCP segmental confinement in the existing 3D network formed between CNTs, while the opposite holds for the samples filled with modified CNT-PS. This is explained by severely retarded segmental motion of the matrix chains due to their preferential interactions with the PS chains of the CNT-PS. Moreover, transient viscoelastic analysis reveals that modified CNT-PS have a more pronounced effect on flow-induced BCP structural orientation with much lower structural recovery rate. It is demonstrated that dynamic-mechanical thermal analysis can provide valuable insights in understanding the role of CNT incorporation on the microstructure of BCP nanocomposite samples. Accordingly, the presence of CNT has a significant promoting effect on microstructural development, comparable to that of annealing.
机译:在这项工作中,研究了碳纳米管(CNTs)对由圆柱状聚苯乙烯-嵌段-聚(乙烯-丁烯)-嵌段-聚苯乙烯(SEBS)制成的纳米复合材料自组装的影响。 CNT用聚苯乙烯(PS)刷通过表面引发的原子转移自由基聚合进行改性,以促进它们的分散以及嵌段共聚物(BCP)的相邻PS域沿改性CNT-PS的取向。动态流变学用于探测BCP纳米复合材料纳米结构的粘弹性和热响应。结果表明,由于在CNT之间形成的现有3D网络中存在BCP片段限制,因此未修饰的CNTs提高了BCP微相分离温度,而填充修饰的CNT-PS的样品则相反。这是由于基质链与CNT-PS的PS链之间的优先相互作用而严重阻碍了链段的运动。此外,瞬态粘弹性分析表明,改性的CNT-PS对流动诱导的BCP结构取向具有更明显的影响,而结构回复率则低得多。结果表明,动态机械热分析可以为理解CNT掺入对BCP纳米复合材料样品微观结构的作用提供有价值的见解。因此,与退火相比,CNT的存在对微结构发展具有显着的促进作用。

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