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Lotus Bioinspired Superhydrophobic, Self-Cleaning Surfaces from Hierarchically Assembled Templates
Journal article   Peer reviewed

Lotus Bioinspired Superhydrophobic, Self-Cleaning Surfaces from Hierarchically Assembled Templates

Audrey Yoke Yee Ho, Emma Luong Van, Chee Tiong Lim, Sriram Natarajan, Noha Elmouelhi, Hong Yee Low, Murty Vyakarnam, Kevin Cooper and Isabel Rodriguez
Journal of polymer science. Part B, Polymer physics, Vol.52(8), pp.603-609
15/04/2014

Abstract

Physical Sciences Polymer Science Science & Technology
The super hydrophobic, self-cleaning properties of natural species derive from the fine hierarchical topography evolved on their surfaces. Hierarchical architectures which are function-mimetic of the lotus leaf are here described and created from multi-scale hierarchical assembled templates. The first level of hierarchy was a micromachined dome structure template and the second level of hierarchy was added by layering a thin nanoporous membrane such as porous anodized alumina or an ion track etch membrane. The assembled templates were nanoimprinted by a single step process on thermoplastic films. The wetting angle of the surfaces reached a value of 160 degrees and the self-cleaning behavior was observed. The superhydrophobic behavior remained over 1 year after fabrication, which demonstrates the stability of these polymeric self-cleaning topographies. (c) 2014 Wiley Periodicals, Inc. J. Polym. Sci. Part B. Polym. Phys. 2014, 52, 603-609

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