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用于集水的亲水性定向光滑粗糙表面。

Hydrophilic directional slippery rough surfaces for water harvesting.

作者信息

Dai Xianming, Sun Nan, Nielsen Steven O, Stogin Birgitt Boschitsch, Wang Jing, Yang Shikuan, Wong Tak-Sing

机构信息

Department of Mechanical and Nuclear Engineering and Materials Research Institute, Pennsylvania State University, University Park, PA 16802, USA.

Department of Mechanical Engineering, University of Texas at Dallas, Richardson, TX 75080, USA.

出版信息

Sci Adv. 2018 Mar 30;4(3):eaaq0919. doi: 10.1126/sciadv.aaq0919. eCollection 2018 Mar.

Abstract

Multifunctional surfaces that are favorable for both droplet nucleation and removal are highly desirable for water harvesting applications but are rare. Inspired by the unique functions of pitcher plants and rice leaves, we present a hydrophilic directional slippery rough surface (SRS) that is capable of rapidly nucleating and removing water droplets. Our surfaces consist of nanotextured directional microgrooves in which the nanotextures alone are infused with hydrophilic liquid lubricant. We have shown through molecular dynamics simulations that the physical origin of the efficient droplet nucleation is attributed to the hydrophilic surface functional groups, whereas the rapid droplet removal is due to the significantly reduced droplet pinning of the directional surface structures and slippery interface. We have further demonstrated that the SRS, owing to its large surface area, hydrophilic slippery interface, and directional liquid repellency, outperforms conventional liquid-repellent surfaces in water harvesting applications.

摘要

对于集水应用而言,非常需要既有利于液滴成核又有利于液滴去除的多功能表面,但这种表面却很罕见。受猪笼草和水稻叶片独特功能的启发,我们提出了一种亲水性定向光滑粗糙表面(SRS),它能够使水滴快速成核并去除。我们的表面由纳米纹理化的定向微槽组成,其中仅纳米纹理中注入了亲水性液体润滑剂。我们通过分子动力学模拟表明,高效液滴成核的物理根源归因于亲水性表面官能团,而液滴的快速去除则是由于定向表面结构和光滑界面显著降低了液滴的钉扎作用。我们进一步证明,由于其大表面积、亲水性光滑界面和定向拒液性,SRS在集水应用中优于传统的拒液表面。

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