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首页> 外文期刊>ACS applied materials & interfaces >Mussel-Inspired One-Step Copolymerization to Engineer Hierarchically Structured Surface with Superhydrophobic Properties for Removing Oil from Water
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Mussel-Inspired One-Step Copolymerization to Engineer Hierarchically Structured Surface with Superhydrophobic Properties for Removing Oil from Water

机译:贻贝启发式的一步共聚合技术,用于设计具有超疏水特性的分层结构表面,用于去除水中的油

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摘要

In the present study, a superhydrophobic polyurethane (PU) sponge with hierarchically structured surface, which exhibits excellent performance in absorbing oils/organic solvents, was fabricated for the first time through mussel-inspired one-step copolymerization approach. Specifically, dopamine (a small molecular bioadhesive) and n-dodecylthiol were copolymerized in an alkaline aqueous solution to generate polydopamirie (PDA) nanoaggregates with n-dodecylthiol motifs on the surface of the PU sponge skeletons. Then, the superhydrophobic sponge that comprised a hierarchical structured surface similar to the chemical/ topological structures of lotus leaf was fabricated. The topological structures, surface wettability, and mechanical property of the sponge were characterized by scanning electron microscopy, contact angle experiments, and compression test. Just as a result of the highly porous structure, superhydrophobic property and strong mechanical stability, this sponge exhibited desirable absorption capability of oils/organic solvents (weight gains ranging from 2494% to 8670%), suggesting a promising sorbents for the removal of oily pollutants from water. Furthermore, thanks to the nonutilization of the complicated processes or sophisticated equipment, the fabrication of the superhydrophobic sponge seemed to be quite easy to scale up. All these merits make the sponge a competitive candidate when compared to the conventional absorbents, for example, nonwoven polypropylene fabric.
机译:在本研究中,通过贻贝启发式的一步共聚方法首次制备了具有分层结构表面的超疏水性聚氨酯海绵,该海绵在吸收油/有机溶剂方面表现出优异的性能。具体而言,将多巴胺(一种小分子生物粘合剂)和正十二烷基硫醇在碱性水溶液中共聚,以在PU海绵骨架的表面上生成具有正十二烷基硫醇基序的聚多巴胺(PDA)纳米聚集体。然后,制造了具有类似于荷叶的化学/拓扑结构的分层结构化表面的超疏水海绵。通过扫描电子显微镜,接触角实验和压缩试验表征了海绵的拓扑结构,表面润湿性和机械性能。正是由于其高度多孔的结构,超疏水性和强大的机械稳定性,该海绵对油/有机溶剂表现出了令人满意的吸收能力(重量增加了2494%至8670%),这表明该油有望用于去除油性污染物从水。此外,由于没有利用复杂的工艺或复杂的设备,超疏水海绵的制造似乎很容易扩大规模。与常规吸收剂(例如非织造聚丙烯织物)相比,所有这些优点使海绵成为竞争性候选产品。

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