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首页> 外文期刊>Nano letters >Autophobicity-driven surface segregation and patterning of core-shell microgel nanoparticles
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Autophobicity-driven surface segregation and patterning of core-shell microgel nanoparticles

机译:自疏水性驱动的表面分离和核壳微凝胶纳米粒子的图案

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Core-shell microgel (CSMG) nanoparticles, also referred to as core-cross-linked star (CCS) polymers, can be envisaged as permanently cross-linked block copolymer micelles and, as such, afford novel opportunities for chemical functionalization, templating, and encapsulation. In this study, we explore the behavior of CSMG nanoparticles comprising a poly(methyl methacrylate) (PMMA) shell in molten PMMA thin films. Because of the autophobicity between the densely packed, short PMMA arms of the CSMG shell and the long PMMA chains in the matrix, the nanoparticles migrate to the film surface. They cannot, however, break through the surface because of the inherently high surface energy of PMMA. Similar thermal treatment of CSMG-containing PMMA thin films with a polystyrene (PS) capping layer replaces surface energy at the PMMA/air interface by interfacial energy at the PMMA/PS interface, which reduces the energy barrier by an order of magnitude, thereby permitting the nanoparticles; to emerge out of the PMMA bulk. This nanoscale process is reversible and can be captured at intermediate degrees of completion. Moreover, it is fundamentally general and can be exploited as an alternative means by which to reversibly pattern or functionalize polymer surfaces for applications requiring responsive nanolithography.
机译:可以将核-壳微凝胶(CSMG)纳米颗粒也称为核交联的星形(CCS)聚合物,将其设想为永久性交联的嵌段共聚物胶束,从而为化学官能化,模板化和封装。在这项研究中,我们探讨了在熔融的PMMA薄膜中包含聚甲基丙烯酸甲酯(PMMA)壳的CSMG纳米粒子的行为。由于CSMG壳的致密堆积的短PMMA臂与基质中的长PMMA链之间的自憎性,纳米颗粒迁移到薄膜表面。但是,由于PMMA固有的高表面能,它们无法穿透表面。使用聚苯乙烯(PS)覆盖层对含CSMG的PMMA薄膜进行类似的热处理,可以通过PMMA / PS界面处的界面能替代PMMA /空气界面处的表面能,从而将能垒降低了一个数量级,从而实现了纳米颗粒;从PMMA本体中脱颖而出。此纳米级过程是可逆的,可以在完成的中间程度捕获。此外,从根本上讲,它是通用的,可以用作可替代的方法,通过该方法可逆地对聚合物表面进行图案化或功能化,以用于需要响应纳米光刻的应用。

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