首页> 外文期刊>ACS applied materials & interfaces >Methodoiogy for Robust Superhydrophobic Fabrics and Sponges from In Situ Growth of Transition Metal/Metal Oxide Nanocrystals with Thiol Modification and Their Applications in Oil/Water Separation
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Methodoiogy for Robust Superhydrophobic Fabrics and Sponges from In Situ Growth of Transition Metal/Metal Oxide Nanocrystals with Thiol Modification and Their Applications in Oil/Water Separation

机译:硫醇改性的过渡金属/金属氧化物纳米晶体原位生长制备坚固的超疏水织物和海绵的方法及其在油水分离中的应用

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摘要

Solid surfaces possessing both superhydrophobic and superoleophilic properties have attracted significant interest in fundamental investigations and potential applications in the fields of self-cleaning surfaces, oil/water separation, and microfluidic channels. In this paper, a general methodoiogy for robust superhydrophobic fabrics and sponges was proposed via the in situ growth of both transition-metal oxides and metallic nanocrystals, including the simple neutralization reaction and oxidation-reduction reaction. The porous surfaces coated with Group VIII and IB nanocrystals (such as Fe, Co, Ni, Cu, and Ag) can not only present multiscale surface roughness, but also readily coordinate with thiols, leading to special wettability. In our previous work, it has been confirmed that the interaction between the nanocrystals and thiols plays a significant role in the introduction of hydrophobic ingredients. In this work, it has been demonstrated that the efficient control of the nucleation and growth of Group VIII and IB nanocrystals on the porous surfaces becomes the key factor in the formation of multiscale surface roughness, resulting in the achievement of controllable special wettability. In addition, these as-prepared superhydrophobic and superoleophilic fabrics and sponges were successfully used for application in oil/water separation.
机译:同时具有超疏水性和超亲油性的固体表面在基础研究和自清洁表面,油/水分离和微流体通道领域的潜在应用中引起了极大的兴趣。本文通过过渡金属氧化物和金属纳米晶体的原位生长,提出了一种耐用的超疏水性织物和海绵的通用方法,包括简单的中和反应和氧化还原反应。涂有VIII和IB组纳米晶体(如Fe,Co,Ni,Cu和Ag)的多孔表面不仅可以呈现多尺度的表面粗糙度,而且还易于与硫醇配合,从而具有特殊的润湿性。在我们以前的工作中,已经证实纳米晶体和硫醇之间的相互作用在疏水成分的引入中起重要作用。在这项工作中,已证明有效控制多孔表面上的VIII和IB组纳米晶体的成核和生长成为形成多尺度表面粗糙度的关键因素,从而实现了可控制的特殊润湿性。此外,这些制备的超疏水和超亲油织物和海绵已成功用于油/水分离。

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