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用于定向液体传输的一维锥形结构表面上稳定润滑膜的构建。

Construction of the Stable Lubricant Film on One-Dimensional Cone-Structured Surfaces for Directional Liquid Transport.

作者信息

Ma Chenxi, Zhang Dajie, Liu Lan, Liu Cuiping, Zhang Lingling, Luo Yu-Qiong, Yao Xi, Ju Jie

机构信息

Key Lab for Special Functional Materials of Ministry of Education, School of Materials, Henan University, Kaifeng 475004, Henan Province, PR China.

出版信息

ACS Appl Mater Interfaces. 2023 Aug 16;15(32):39017-39024. doi: 10.1021/acsami.3c09103. Epub 2023 Aug 1.

DOI:10.1021/acsami.3c09103
PMID:37526528
Abstract

Directional liquid transport along one-dimensional structures finds vast applications in fog harvest, liquid separation, sensing, chemical synthesis, and numerous other scenarios. Dynamically, the liquid transport speed is boosted by the driving force and retarded by the hysteresis from the liquid/substrate interface. A capillary force-relied lubricant film or a covalently attached polymer brush on the surface could increase liquid mobility temporarily by reducing the interfacial hysteresis. However, the easy depletion of the lubricant film and the stringent restriction of the substrate severely hamper droplet's directional transport in a long run. Herein, we report a feasible and durable hysteresis reduction design with the polymer-brush stabilized lubricating surface (PBSLS). The PBSLS is achieved through incorporating liquid-like polydimethylsiloxane brushes (-PDMS) and the liquid PDMS oligomer (-PDMS). The covalent attached -PDMS "locks" the lubricant oil -PDMS to the cone surface via strong intermolecular van der Waals force in between. The PBSLS on the cone surface can be sustained under constant shearing force from liquid transport for at least 6 h. A cone with such PBSLS shows increased ability of droplet transport and enhanced fog collection performance in the long run. This design supplies an effective way toward regulating macro-level interfacial performance through surface design on the molecular level.

摘要

沿一维结构的定向液体传输在雾收集、液体分离、传感、化学合成及许多其他场景中有着广泛应用。动态来看,液体传输速度受驱动力提升,而受液体/基底界面的滞后作用阻碍。表面上依赖毛细力的润滑膜或共价连接的聚合物刷可通过降低界面滞后暂时提高液体流动性。然而,从长远来看,润滑膜的易耗尽以及基底的严格限制严重阻碍了液滴的定向传输。在此,我们报道一种基于聚合物刷稳定润滑表面(PBSLS)的可行且持久的滞后降低设计。PBSLS是通过引入类液体聚二甲基硅氧烷刷(-PDMS)和液体聚二甲基硅氧烷低聚物(-PDMS)实现的。共价连接的-PDMS通过其间强大的分子间范德华力将润滑油-PDMS“锁定”在锥面上。锥面上的PBSLS在液体传输产生的恒定剪切力下可维持至少6小时。从长远来看,具有这种PBSLS的锥体显示出增强的液滴传输能力和雾收集性能。这种设计提供了一种通过分子水平的表面设计来调节宏观界面性能的有效方法。

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