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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Layer-by-Layer Rose Petal Mimic Surface with Oleophilicity and Underwater Oleophobicity
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Layer-by-Layer Rose Petal Mimic Surface with Oleophilicity and Underwater Oleophobicity

机译:具有亲油性和水下疏油性的逐层玫瑰花瓣模拟表面

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摘要

Surfaces designed with specific wetting properties are still a key challenge in materials science. We present here a facile preparation of a surface assembled by the layer-by-layer technique, using a colloidal dispersion of ionomer particles and linear polyethylene imine. The colloidal ethylene-co-methacrylic acid (EMAA) particles are on the order of half a micron in size with surface features from 40 to 100 nm in width. The resultant surface has roughness on two length scales, one on the micron scale due to the packing of particles and one on the nanoscale due to these surface features on the EMAA particles. This hierarchical structure results in a hydrophobic surface with good water pinning properties (similar to 550 mu N). We show that there is a balance between maximizing contact angle and water pinning force. Furthermore, this surface is oleophilic with regard to many organic solvents, also demonstrating underwater oleophobicity, and given the difference in wetting between aqueous and organic phases, this material may be a candidate material for oil/water separations.
机译:设计具有特定润湿特性的表面仍然是材料科学中的关键挑战。我们在这里介绍一种利用离子交联聚合物粒子和线性聚乙烯亚胺的胶态分散体通过层层组装技术组装的表面的简便方法。胶体乙烯-甲基丙烯酸共聚物(EMAA)颗粒的大小约为半微米,表面特征的宽度为40至100 nm。所得的表面在两个长度尺度上具有粗糙度,一个由于微粒的堆积而在微米尺度上具有粗糙度,并且由于在EMAA颗粒上的这些表面特征而在纳米尺度上具有一个粗糙度。这种分层结构导致疏水表面具有良好的水钉扎性能(类似于550μN)。我们表明,在最大接触角和水钉扎力之间存在平衡。此外,该表面相对于许多有机溶剂具有亲油性,也表明了水下的疏油性,并且鉴于水相和有机相之间的润湿差异,该材料可能是油/水分离的候选材料。

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