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

Authors :
Haoran Zhan
Yanqiu Chen
Yu Liu
Woonming Lau
Chao Bao
Minggan Li
Yunlong Lu
Jun Mei
David Hui
Source :
Langmuir. May2017, Vol. 33 Issue 20, p4881-4889. 9p.
Publication Year :
2017

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. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
07437463
Volume :
33
Issue :
20
Database :
Academic Search Index
Journal :
Langmuir
Publication Type :
Academic Journal
Accession number :
123242566
Full Text :
https://doi.org/10.1021/acs.langmuir.6b04409