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首页> 外文期刊>Macromolecules >Nanostructures in Thermosetting Blends of Epoxy Resin with Polydimethylsiloxane-block-poly(epsilon-caprolactone)-block-polystyrene ABC Triblock Copolymer
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Nanostructures in Thermosetting Blends of Epoxy Resin with Polydimethylsiloxane-block-poly(epsilon-caprolactone)-block-polystyrene ABC Triblock Copolymer

机译:环氧树脂与聚二甲基硅氧烷嵌段-聚(ε-己内酯)-嵌段-聚苯乙烯ABC三嵌段共聚物的热固性共混物的纳米结构

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摘要

Polydimethylsiloxane-block-poly(epsilon-caprolactone)-block-polystyrene ABC-type triblock copolymer (PDMS-b-PCL-b-PS) was synthesized via the sequential ring-opening polymerization and atom transfer radical polymerization. The ABC triblock copolymer was incorporated into epoxy to prepare the nanostructured thermosets. In terms of the difference in miscibility of epoxy with the subchains of the ABC triblock copolymer after and before curing reaction. it is proposed that the formation of the nanostructures follows the combined mechanisms of self-assembly and reaction-induced microphase separation. The self-organized nanophases could be formed before the Curing reaction since the PDMS subchains of the triblock polymer is immiscible with the precursors of epoxy before curing reaction. The reaction-induced microphase separation of PS subchains occurred in the presence of the PDMS nanophases whereas the PCL subchains remain miscible with epoxy after and before curing reaction. By means of atomic force microscopy and small-angle X-ray scattering, the morphological structures of the thermosets containing the ABC triblock copolymer were examined, and the formation of the nanostructures was addressed on the basis of the combination of self-assembly and reaction-induced microphase separation mechanisms.
机译:通过顺序开环聚合和原子转移自由基聚合合成了聚二甲基硅氧烷嵌段-聚(ε-己内酯)-嵌段-聚苯乙烯ABC型三嵌段共聚物(PDMS-b-PCL-b-PS)。将ABC三嵌段共聚物掺入环氧树脂中以制备纳米结构的热固性材料。在固化反应前后,环氧与ABC三嵌段共聚物的亚链的相容性不同。提出纳米结构的形成遵循自组装和反应诱导的微相分离的组合机理。自组织的纳米相可以在固化反应之前形成,因为三嵌段聚合物的PDMS子链与固化反应之前的环氧树脂前体不混溶。在PDMS纳米相的存在下,发生了反应诱导的PS子链的微相分离,而在固化反应前后,PCL子链仍可与环氧树脂混溶。通过原子力显微镜和小角度X射线散射,研究了含有ABC三嵌段共聚物的热固性塑料的形态结构,并在自组装和反应相结合的基础上研究了纳米结构的形成。诱导的微相分离机制。

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