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受巨大超疏油力支撑的仿油生水黾在油水界面上漂浮。

Bioinspired oil strider floating at the oil/water interface supported by huge superoleophobic force.

机构信息

Beijing National Laboratory for Molecular Sciences, Key Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, PR China.

出版信息

ACS Nano. 2012 Jun 26;6(6):5614-20. doi: 10.1021/nn301550v. Epub 2012 May 24.

Abstract

Oil pollution to aquatic devices, especially to those oil-cleaning devices and equipment-repairing robots during oil spill accidents, has drawn great attention and remains an urgent problem to be resolved. Developing devices that can move freely in an oil/water system without contamination from oil has both scientific and practical importance. In nature, the insect water strider can float on water by utilizing the superhydrophobic supporting force received by its legs. Inspired by this unique floating phenomenon, in this article, we designed a model device named "oil strider" that could float stably at the oil/water interface without contamination by oil. The floating capability of the oil strider originated from the huge underwater superoleophobic supporting force its "legs" received. We prepared the micro/nanohierarchical structured copper-oxide-coated copper wires, acting as the artificial legs of oil strider, by a simple base-corrosion process. The surface structures and hydrophilic chemical components of the coatings on copper wires induced the huge superoleophobic force at the oil/water interface, to support the oil strider from sinking into the oil. Experimental results and theoretical analysis demonstrate that this supporting force is mainly composed of three parts: the buoyancy force, the curvature force, and the deformation force. We anticipate that this artificial oil strider will provide a guide for the design of smart aquatic devices that can move freely in an oil/water system with excellent oil repellent capability, and be helpful in practical situations such as oil handling and oil spill cleanup.

摘要

油污会对水下设备造成污染,尤其是在溢油事故中对那些油污清理设备和设备维修机器人造成污染,这引起了人们的极大关注,是一个亟待解决的问题。开发能够在油水系统中自由移动而不受油污污染的设备具有重要的科学和实际意义。在自然界中,昆虫水黾可以利用其腿部所受到的超疏水支撑力在水面上自由漂浮。受此独特的漂浮现象启发,本文设计了一种名为“油浮子”的模型装置,它可以稳定地漂浮在油水界面上,而不会受到油污的污染。油浮子的漂浮能力源于其“腿部”所受到的巨大水下超疏油支撑力。我们通过简单的基底腐蚀工艺制备了具有微纳分级结构的氧化铜涂层铜丝,作为油浮子的人工腿。铜丝表面的结构和亲水化学组分在油水界面上产生了巨大的超疏油力,支撑着油浮子不沉入油中。实验结果和理论分析表明,这种支撑力主要由三部分组成:浮力、曲率力和变形力。我们预计,这种人工油浮子将为设计能够在油水系统中自由移动且具有优异的疏油能力的智能水下设备提供指导,并有助于处理油污和清理溢油等实际情况。

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