4.8 Article

Electrowetting Control of Cassie-to-Wenzel Transitions in Superhydrophobic Carbon Nanotube-Based Nanocomposites

期刊

ACS NANO
卷 3, 期 10, 页码 3031-3036

出版社

AMER CHEMICAL SOC
DOI: 10.1021/nn900846p

关键词

carbon nanotube; nanocomposites; superhydrophobic; Cassie-to-Wenzel transition; electrowetting

资金

  1. Agency for Science, Technology and Research, Singapore
  2. Australian Research Council
  3. CSIRO (Australia)

向作者/读者索取更多资源

The possibility of effective control of the wetting properties of a nanostructured surface consisting of arrays of amorphous carbon nanoparticles capped on carbon nanotubes using the electrowetting technique is demonstrated. By analyzing the electrowetting curves with an equivalent circuit model of the solid/liquid interface, the long-standing problem of control and monitoring of the transition between the slippy Cassie state and the sticky Wenzel states is resolved. The unique structural properties of the custom-designed nanocomposites with precise tailored surface energy without using any commonly utilized low-surface-energy (e.g., polymer) conformal coatings enable easy identification of the occurrence of such transition from the optical contrast on the nanostructured surfaces. This approach to precise control of the wetting mode transitions is generic and has an outstanding potential to enable the stable superhydrophobic capability of nanostructured surfaces for numerous applications, such as low-friction microfluidics and self-cleaning.

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