Tunable superapolar Lotus-to-Rose hierarchical nanosurfaces via vertical carbon nanotubes driven electrohydrodynamic lithography† †Electronic supplementary information (ESI) available. See DOI: 10.1039/c6nr08706j Click here for additional data file.

نویسندگان

  • Chiara Busà
  • Jonathan James Stanley Rickard
  • Eugene Chun
  • Yaw Chong
  • Viroshan Navaratnam
  • Pola Goldberg Oppenheimer
چکیده

The development of a robust, cost-effective, scalable and simple technique that enables the design and construction of well-controlled large area superhydrophobic surface structures which can be easily tuned from lotus-leaf to rose-petal state is essential to enable progress in realising the full applied potential of such surfaces. In this study, we introduce the tuneable carbon nanotubes-based electrohydrodynamic lithography (CNT-EHL) to fabricate unique multiscale structured cones and nanohair-like architectures with various periodicities and dimensions, successfully enabling surface energy minimization. The possibility of contact-less lithography via the CNT-EHL morphology replication combined with the electric field coupling to smaller self-assembled patterns within the film, provides a way for hierarchical structure control spanning many length scales along with tuneable wetting capabilities. By controlling the hierarchy of micro- to nano cones and spikes, these morphologies provide a range of architectures with sufficient roughness for very low wettability, with the highest contact angle achieved of 173° and their properties can be easily switched between lotus-leaf to rose-petal behaviour.

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منابع مشابه

Self-disproportionation of enantiomers of thalidomide and its fluorinated analogue via gravity-driven achiral chromatography: mechanistic rationale and implications† †Electronic supplementary information (ESI) available. CCDC 1009504, 1009505, 1009506, 1009507, 1009508, 1009509. For ESI and crystallographic data in CIF or other electronic format see DOI: 10.1039/c4sc03047h Click here for additional data file. Click here for additional data file.

Department of Nanopharmaceutical Scienc Nagoya Institute of Technology, Gokiso, Sho [email protected]; Fax: +81-52-735-754 Department of Life Science and Medical Wakamatsu-cho 2-2, Shinjuku-ku, Tokyo 16 Consolidated Research Institute for Advan University (ASMeW), Waseda-tsurumaki-cho † Electronic supplementary information ( 1009506, 1009507, 1009508, 1009509. For other electronic format se...

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عنوان ژورنال:

دوره 9  شماره 

صفحات  -

تاریخ انتشار 2017