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纳米柱增强摩擦学表面作为抗污染膜。

Nanoscale Pillar-Enhanced Tribological Surfaces as Antifouling Membranes.

机构信息

Department of Chemical and Biological Engineering, Korea University , 5-1 Anam-dong, Seongbuk-gu, Seoul 136-713, Republic of Korea.

Materials Science and Engineering Division, The National Institute of Standards and Technology (NIST) , 100 Bureau Drive, Gaithersburg, Maryland 20899, United States.

出版信息

ACS Appl Mater Interfaces. 2016 Nov 16;8(45):31433-31441. doi: 10.1021/acsami.6b10875. Epub 2016 Nov 1.

Abstract

We present a nonconventional membrane surface modification approach that utilizes surface topography to manipulate the tribology of foulant accumulation on water desalination membranes via imprinting of submicron titanium dioxide (TiO) pillar patterns onto the molecularly structured, flat membrane surface. This versatile approach overcomes the constraint of the conventional approach relying on interfacial polymerization that inevitably leads to the formation of ill-defined surface topography. Compared to the nonpatterned membranes, the patterned membranes showed significantly improved fouling resistance for both organic protein and bacterial foulants. The use of hydrophilic TiO as a pattern material increases the membrane hydrophilicity, imparting improved chemical antifouling resistance to the membrane. Fouling behavior was also interpreted in terms of the topographical effect depending on the relative size of foulants to the pattern dimension. In addition, computational fluid dynamics simulation suggests that the enhanced antifouling of the patterned membrane is attributed to the enhancement in overall and local shear stress at the fluid-TiO pattern interface.

摘要

我们提出了一种非传统的膜表面改性方法,利用表面形貌通过在分子结构的平面膜表面上压印亚微米二氧化钛(TiO)柱图案来操纵海水淡化膜上污染物积聚的摩擦学。这种通用方法克服了传统方法的限制,传统方法依赖于界面聚合,不可避免地导致表面形貌不明确的形成。与非图案化膜相比,图案化膜对有机蛋白质和细菌污染物均显示出明显改善的抗污染能力。亲水 TiO 的使用作为图案材料增加了膜的亲水性,赋予膜更好的耐化学污染性。还根据污染物相对于图案尺寸的大小,从地形效应的角度解释了污染行为。此外,计算流体动力学模拟表明,图案化膜的增强抗污染性能归因于在流体-TiO 图案界面处整体和局部剪切应力的增强。

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