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垂直方向光流变化的偶氮苯材料对微纳图案表面的直接制造。

Direct Fabrication of Micro/Nano-Patterned Surfaces by Vertical-Directional Photofluidization of Azobenzene Materials.

机构信息

Department of Materials Science and Engineering, University of Pennsylvania , Philadelphia, Pennsylvania 19104, United States.

出版信息

ACS Nano. 2017 Feb 28;11(2):1320-1327. doi: 10.1021/acsnano.6b05934. Epub 2017 Jan 20.

Abstract

Anisotropic movement of azobenzene materials (i.e., azobenzene molecules incorporated in polymer, glass, or supramolecules) has provided significant opportunities for the fabrication of micro/nanoarchitectures. The examples include circular holes, line gaps, ellipsoidal holes, and nanofunnels. However, all of the previous studies have only focused on the lateral directional movement for the structural shaping of azobenzene materials. Herein, we propose structural shaping based on a vertical directional movement of azobenzene materials. To do this, light with oblique incidence, containing normal direction light polarization, was illuminated onto azobenzene materials film contact with patterned elastomeric molds (i.e., PDMS) so that the resulting vertical directional movement of azobenzene materials fills in the cavities of the molds and results in pattern formation. As a result, a range of patterns with sizes of features from micro- to sub-100 nm scale was successfully fabricated in a large area (few cm), and the structural height was deterministically controlled by simply adjusting irradiation time. In addition to the notable capability of fabricating the single-scale structures, the technique provides a facile way to fabricate complex hierarchical multiscale structures, ensuring its versatility and wide applicability to various applications. As a selected exemplary application of the multiscale structures, a superhydrophobic surface has been successfully demonstrated.

摘要

各向异性的偶氮苯材料(即,掺入聚合物、玻璃或超分子中的偶氮苯分子)的运动为微/纳米结构的制造提供了重要机会。这些例子包括圆形孔、线间隙、椭圆形孔和纳米漏斗。然而,之前所有的研究都只关注偶氮苯材料的横向定向运动来进行结构成型。在此,我们提出了基于偶氮苯材料的垂直定向运动的结构成型。为此,使用包含法向光偏振的斜入射光来照射与图案化弹性体模具(即 PDMS)接触的偶氮苯材料膜,使得偶氮苯材料的垂直定向运动填充模具的空腔并形成图案。结果,在大面积(几厘米)上成功制造了一系列从微米到亚 100nm 尺度的特征尺寸的图案,并且通过简单地调整照射时间可以确定地控制结构高度。除了制造单尺度结构的显著能力之外,该技术还提供了一种制造复杂分层多尺度结构的简便方法,确保了其多功能性和广泛适用性适用于各种应用。作为多尺度结构的一个选定示例应用,成功地展示了超疏水表面。

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