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Nanoporous Polyethylene Thin Films Templated by Polymeric Bicontinuous Microemulsions: Evolution of Morphology on Non-neutral Substrates

机译:聚合物双连续微乳液为模板的纳米多孔聚乙烯薄膜:非中性基底上形态的演变。

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Polymeric bicontinuous microemulsions (BμE), found in well-designed ternary blends of two homopolymers and a diblock copolymer, have been extensively studied in the bulk, for example, as versatile templates for the synthesis of nanoporous materials. However, there have been few reports regarding BμE-forming blends as films and the potential impact of confinement on the morphology of such blends. We have investi-gated the morphology of ternary blends of polyethylene (PE), poly(ethylene-alt-propylene) (PEP), and poly (ethylene-b-ethylene-altpropylene) (PE-PEP) on a variety of substrates. The films were rendered nanoporous by selective extraction of the PEP component, which also created contrast for scanning electron microscopy (SEM). Blends that form BμEs in the bulk were found to undergo an evolution of morphology from a BμE to a macro-phase separated state, induced by the segregation of blend components to the film interfaces. The dynamics of the transformation are accelerated by decreasing film thickness. The results presented indicate that BμEs can be kinetically trapped on arbitrary substrates, which has important implications for the production of bicontinuous, nanoporous films.
机译:聚合物双连续微乳液(BμE),在设计良好的两种均聚物和二嵌段共聚物的三元共混物中发现,已作为主体被广泛研究,例如,作为合成纳米多孔材料的通用模板。然而,很少有报道将形成BμE的混合物作为薄膜,以及封闭对这种混合物形态的潜在影响。我们已经研究了在各种基材上的聚乙烯(PE),聚(乙烯-alt-丙烯)(PEP)和聚(乙烯-b-乙烯-亚丙基丙烯)(PE-PEP)三元共混物的形态。通过选择性萃取PEP组分使薄膜具有纳米孔,这也为扫描电子显微镜(SEM)创造了对比。发现在大块中形成BμE的共混物经历了从BμE到宏观相分离状态的形态演变,这是由于共混物组分分离到薄膜界面而引起的。减小薄膜厚度可加快转化的动力学过程。给出的结果表明,BμEs可以动力学地捕获在任意基质上,这对双连续纳米多孔膜的生产具有重要意义。

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