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在弹性体上精确修剪二维反蛋白石晶格,以获得具有不同尺寸和形态的有序纳米结构。

Precision-Trimming 2D Inverse-Opal Lattice on Elastomer to Ordered Nanostructures with Variable Size and Morphology.

机构信息

Chengdu Green Energy and Green Manufacturing Technology R&D Center , Chengdu, 610207, China.

Beijing Computational Science Research Center , Beijing, 100093, China.

出版信息

Langmuir. 2017 May 23;33(20):4881-4889. doi: 10.1021/acs.langmuir.6b04409. Epub 2017 May 8.

Abstract

A low-cost and scalable method is developed for producing large-area elastomer surfaces having ordered nanostructures with a variety of lattice features controllable to nanometer precision. The method adopts the known technique of molding a PDMS precursor film with a close-packed monolayer of monodisperse submicron polystyrene beads on water to form an inverse-opal dimple lattice with the dimple size controlled by the bead selection and the dimple depth by the molding condition. The subsequent novel precision engineering of the inverse-opal lattice comprises trimming the PDMS precursor by a combination of polymer curing temperature/time and polymer dissolution parameters. The resultant ordered surface nanostructures, fabricated with an increasing degree of trimming, include (a) submicron hemispherical dimples with nanothin interdimple rims and walls; (b) nanocones with variable degrees of tip-sharpness by trimming off the top part of the nanothin interdimple walls; and (c) soup-plate-like submicron shallow dimples with interdimple rims and walls by anisotropically trimming off the nanocones and forming close-packed shallow dimples. As exemplars of industrial relevance of these lattice features, tunable Young's modulus and wettability are demonstrated.

摘要

开发了一种低成本、可扩展的方法,用于生产具有各种晶格特征的大面积弹性体表面,这些特征的晶格可以达到纳米级精度的可控性。该方法采用了一种已知的技术,即将具有单分散亚微米聚苯乙烯珠的紧密堆积单层 PDMS 前体膜在水上成型,形成具有凹坑尺寸由珠选择控制、凹坑深度由成型条件控制的反蛋白石凹坑晶格。随后,对反蛋白石晶格进行了新颖的精密工程处理,包括通过聚合物固化温度/时间和聚合物溶解参数的组合对 PDMS 前体进行修剪。随着修剪程度的增加,所制造的有序表面纳米结构包括:(a)具有纳米薄凹坑间壁和壁的亚微米半球形凹坑;(b)通过去除纳米薄凹坑间壁的顶部来实现不同程度的尖锐度的纳米锥形;和(c)通过各向异性地去除纳米锥形并形成紧密堆积的浅凹坑,形成汤盘状的亚微米浅凹坑,具有凹坑间壁和壁。作为这些晶格特征的工业相关性的实例,展示了可调的杨氏模量和润湿性。

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