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通过呼吸图案法轻松制备超疏水纳米针阵列。

Facile fabrication of super-hydrophobic nano-needle arrays via breath figures method.

作者信息

Kim Jiseok, Lew Brian, Kim Woo Soo

机构信息

Mechatronic Systems Engineering, School of Engineering Science, Simon Fraser University, 250-13450 102nd Avenue, Surrey, BC V3T 0A3, Canada.

出版信息

Nanoscale Res Lett. 2011 Dec 6;6(1):616. doi: 10.1186/1556-276X-6-616.

Abstract

Super-hydrophobic surfaces which have been fabricated by various methods such as photolithography, chemical treatment, self-assembly, and imprinting have gained enormous attention in recent years. Especially 2D arrays of nano-needles have been shown to have super-hydrophobicity due to their sharp surface roughness. These arrays can be easily generated by removing the top portion of the honeycomb films prepared by the breath figures method. The hydrophilic block of an amphiphilic polymer helps in the fabrication of the nano-needle arrays through the production of well-ordered honeycomb films and good adhesion of the film to a substrate. Anisotropic patterns with water wettability difference can be useful for patterning cells and other materials using their selective growth on the hydrophilic part of the pattern. However, there has not been a simple way to generate patterns with highly different wettability. Mechanical stamping of the nano-needle array with a polyurethane stamp might be the simplest way to fabricate patterns with wettability difference. In this study, super-hydrophobic nano-needle arrays were simply fabricated by removing the top portion of the honeycomb films. The maximum water contact angle obtained with the nano-needle array was 150°. By controlling the pore size and the density of the honeycomb films, the height, width, and density of nano-needle arrays were determined. Anisotropic patterns with different wettability were fabricated by simply pressing the nano-needle array at ambient temperature with polyurethane stamps which were flexible but tough. Mechanical stamping of nano-needle arrays with micron patterns produced hierarchical super-hydrophobic structures.PACS: 05.70.Np, 68.55.am, 68.55.jm.

摘要

近年来,通过光刻、化学处理、自组装和压印等各种方法制备的超疏水表面受到了极大关注。特别是二维纳米针阵列由于其尖锐的表面粗糙度而表现出超疏水性。通过去除呼吸图案法制备的蜂窝膜的顶部,可以轻松生成这些阵列。两亲聚合物的亲水嵌段通过制备有序的蜂窝膜以及使膜与基底良好粘附,有助于纳米针阵列的制备。具有水润湿性差异的各向异性图案可用于利用细胞和其他材料在图案亲水部分的选择性生长来对其进行图案化。然而,尚未有一种简单的方法来生成具有高度不同润湿性的图案。用聚氨酯印章对纳米针阵列进行机械压印可能是制备具有润湿性差异图案的最简单方法。在本研究中,通过去除蜂窝膜的顶部简单地制备了超疏水纳米针阵列。纳米针阵列获得的最大水接触角为150°。通过控制蜂窝膜的孔径和密度,确定了纳米针阵列的高度、宽度和密度。通过在室温下用柔性但坚韧的聚氨酯印章简单按压纳米针阵列,制备了具有不同润湿性的各向异性图案。用微米图案对纳米针阵列进行机械压印产生了分级超疏水结构。物理化学和凝聚态物理学分类号:05.70.Np,68.55.am,68.55.jm。

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