Issue 32, 2020

Direct nanofluidic channels via hardening and wrinkling of thin polymer films

Abstract

In this study, we propose a rational route to create wrinkling patterns with individually controllable location and direction in thin polymer films. Optical and atomic force microscopy analysis confirmed the formation of straight wrinkles with a typical width of 1.51 to 1.55 μm and a height of 60 to 65 nm. Confocal fluorescence microscopy revealed that each wrinkle produces a continuous hollow channel that interconnects neighboring holes in the polymer film, demonstrating potential applications as nanoscale fluidic channel and reactor. Moreover, we propose a mechanism that considers the elastic deformation energy and interface energies as crucial parameters that govern the mechanical instabilities, which provides scaling relationships between the height, width, and thickness of the wrinkles. This offers additional opportunities for control over the size and aspect ratio of the wrinkles and channels.

Graphical abstract: Direct nanofluidic channels via hardening and wrinkling of thin polymer films

Supplementary files

Article information

Article type
Paper
Submitted
26 May 2020
Accepted
28 Jul 2020
First published
29 Jul 2020

Nanoscale, 2020,12, 16895-16900

Author version available

Direct nanofluidic channels via hardening and wrinkling of thin polymer films

J. H. Lee, W. J. Chang, W. Y. Choi, J. Park, J. Jang and W. I. Park, Nanoscale, 2020, 12, 16895 DOI: 10.1039/D0NR04032K

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