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β-cyclodextrin and its hyperbranched polymers-induced micro/nanopatterns and tunable wettability on polymer surfaces

机译:β-环糊精及其超支化聚合物诱导的微/纳米图案和聚合物表面的可调润湿性

摘要

This paper reports an efficient strategy to fabricate micro/nanopatterns on the surfaces of polymers for obtaining tunable wettability. Tepee-like bundles as micro/nanopatterns, composed of irregular polygon "podium" and "valley" structures, are formed by adding β-cyclodextrin (β-CD) or its hyperbranched polymers [HBP(β-CD)s] into a polystyrene (PS) matrix in the process of anodized aluminum oxide (AAO) template wetting. The degree and region of micro/nanopatterns are evidently enlarged with the increase of β-CD content or the molecular weight (Mw) of HBP(β-CD). The formation of micro/nanopatterns is mainly dependant on the self-organization of long and flexible aligned nanofiber/nanotube arrays with high aspect ratios, which are generated by the enhanced nanoflow behaviors of β-CD or HBP(β-CD)-containing PS melts in AAO templates. The final topographies of micro/nanopatterns are determined by the dilation stress and the interactions of nanofibers/nanotubes during the template's removal and solvent evaporation process. The static and dynamic water contact angle measurements show that the wettability of micro/nanopatterned surfaces is systematically tuned from being merely hydrophobic to being highly hydrophobic, and to being finally superhydrophobic by simply adjusting the content of β-CD or the Mw of HBP(β-CD) due to the decrease of the contact area fraction of the water droplet and solid polymer. The reported novel method, using nanoparticles or hyperbranched polymers as processing aids to induce micro/nanopatterns and tunable wettability on polymer surfaces, may be extended to various polymeric matrices to realize nanopatterns, and is useful for tailoring artificial superhydrophobic surfaces as well.
机译:本文报道了一种在聚合物表面上制造微/纳米图案以获得可调节的润湿性的有效策略。通过将β-环糊精(β-CD)或其超支化聚合物[HBP(β-CD)s]加入聚苯乙烯中,形成由不规则多边形“平台”和“谷”结构组成的圆锥形束状微/纳米颗粒。 (PS)基质在阳极氧化铝(AAO)模板润湿过程中。随着β-CD含量或HBP(β-CD)分子量(Mw)的增加,微/纳米结构的程度和区域明显增大。微观/纳米图案的形成主要取决于具有高纵横比的长且柔性排列的纳米纤维/纳米管阵列的自组织,这是由增强的β-CD或含HBP(β-CD)的PS的纳米流动行为产生的在AAO模板中融化。微观/纳米图案的最终形貌由模板去除和溶剂蒸发过程中的扩张应力和纳米纤维/纳米管的相互作用决定。静态和动态水接触角的测量表明,通过简单地调节β-CD或HBP(β)的含量,可以将微/纳米表面的润湿性从仅疏水性转变为高度疏水性,最终达到超疏水性。 -CD)是由于水滴与固体聚合物的接触面积分数的降低。使用纳米颗粒或超支化聚合物作为加工助剂在聚合物表面上诱导微/纳米图案和可调节的润湿性的已报道的新方法,可以扩展到各种聚合物基体上以实现纳米图案,并且也可用于定制人造超疏水表面。

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