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Synthetic Surfaces with Robust and Tunable Underwater Superoleophobicity

机译:具有坚固且可调的水下超疏油性的合成表面

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摘要

Surfaces with extreme wetting properties are useful for the collection, manipulation, transport, and avoidance of aqueous and organic fluids of commercial and strategic importance. Two major obstacles to the deployment of synthetic non-wetting materials in practical scenarios are their lack of mechanical durability and their susceptibility to fouling in contaminated or chemically complex media. Here, crosslinked and nanoporous polymer multilayers are reported that overcome these limitations and exhibit robust and tunable "underwater superoleophobicity", or the ability to almost completely prevent contact with oils and other organic fluids when submerged in water. These entirely organic coatings mimic key chemical and structural features found on the scales of fish and other natural anti-oil-fouling surfaces, and are remarkably tolerant to physical, chemical, and environmental insults commonly encountered in natural and synthetic aqueous environments. This approach also permits facile manipulation and patterning of surface chemistry and, thus, tunable spatial control over other important aspects of inter-facial behavior, such as underwater oil adhesiveness, that extend and expand the potential utility of synthetic anti-oil-fouling surfaces in aqueous, aquatic, and marine environments.
机译:具有极高润湿性的表面可用于收集,处理,运输和避免具有商业和战略意义的水性和有机液体。在实际应用中,使用合成非润湿材料的两个主要障碍是它们缺乏机械耐久性,以及在受污染或化学复杂的介质中容易结垢。在这里,据报道交联的和纳米多孔的聚合物多层体克服了这些限制并表现出坚固且可调节的“水下超疏油性”,或者当浸入水中时几乎完全防止与油和其他有机流体接触的能力。这些完全有机的涂层模仿了鱼类和其他天然防油污表面上发现的关键化学和结构特征,并且显着耐受天然和合成水性环境中常见的物理,化学和环境损害。这种方法还允许对表面化学物质进行简便的操作和图案化,从而对界面行为的其他重要方面(如水下油的粘附性)进行可调节的空间控制,从而扩展并扩展了合成防污垢表面的潜在用途。水性,水生和海洋环境。

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  • 来源
    《Advanced Functional Materials》 |2015年第11期|1672-1681|共10页
  • 作者

    Uttam Manna; David M. Lynn;

  • 作者单位

    Department of Chemical & Biological Engineering University of Wisconsin-Madison 1415 Engineering Drive, Madison, WI 53706, USA;

    Department of Chemical & Biological Engineering University of Wisconsin-Madison 1415 Engineering Drive, Madison, WI 53706, USA,Department of Chemistry University of Wisconsin-Madison 1101 University Avenue, Madison, WI 53706, USA;

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