Published in

Royal Society of Chemistry, Journal of Materials Chemistry A: materials for energy and sustainability, 9(4), p. 3197-3203, 2016

DOI: 10.1039/c5ta09253a

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A one-step electrodeposition of homogeneous and vertically aligned nanotubes with parahydrophobic properties (high water adhesion)

Journal article published in 2016 by Thierry Darmanin ORCID, Frédéric Guittard ORCID
This paper was not found in any repository, but could be made available legally by the author.
This paper was not found in any repository, but could be made available legally by the author.

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Abstract

Here, we report for the first time parahydrophobic (high water adhesion) vertically aligned nanotubes by a one-step electropolymerization of naphtho[2,3-b]thieno[3,4-e][1,4]dioxine (NaphDOT) without surfactant and hard template. The formation of nanotubes is probably due to the stabilization by the polymer of gas bubbles produced in-situ during electropolymerization process. The nanotubes are obtained by cyclic voltammetry or at constant potential, but their formation is highly dependent on the deposition method. By cyclic voltammetry, the size of the nanotubes is extremely large (diameter 300 nm) and independent of the number of deposition scans, while only the density of nanotubes increases. At constant potential, all the seeds for the nanotube formation are created in the first moments, while the size of the nanotube increases with the deposition charge. Here, water contact angle up to 135° are obtained even if the polymer is intrinsically highly hydrophilic (Young angle = 63.6°). Moreover, water droplets put on these substrates remain stuck even after an inclination of 90° revealing extremely high adhesion. Such materials could be used in water transportation and harvesting, energy systems and biosensing.