Superhydrophobic surfaces (SHS) show remarkable water repellency properties, and their use may have a tremendous impact for a plethora of applications, where liquid water accumulation needs to be controlled or minimised. However, the durability of SHS in operational conditions is a severe issue that currently represents a bottleneck for the technology transfer from laboratory to industrial applications. In the present work, we try to fill in the gap caused by the absence of a standard for evaluation for SHS durability, by developing a protocol for testing surface durability. The proposed protocol includes nine tests as follows: water immersion, acidic environment, alkaline environment, ionic solution, mechanical erosion, ultraviolet exposure, resistance to heating, alcohol immersion and hydrocarbon immersion. The protocol can serve to give an indication of surface robustness in a variety of potentially harmful environments, by providing a global figure of merit and ranking for different SHS and thereby allowing for identifying those surfaces fulfilling requirements for a specific application. To illustrate the protocol, we tested a SHS developed in-house by grafting of lauric acid molecules on an aluminum substrate. This article contains supporting information that is available online.
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March 2015
Research Article|
March 01 2015
Assessing durability of superhydrophobic surfaces
Ileana Malavasi, MSc;
Ileana Malavasi, MSc
Department of Engineering, University of Bergamo, Dalmine (BG), Italy
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Ilaria Bernagozzi, MSc;
Ilaria Bernagozzi, MSc
Department of Engineering, University of Bergamo, Dalmine (BG), Italy
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Carlo Antonini, PhD;
Carlo Antonini, PhD
Department of Engineering, University of Bergamo, Dalmine (BG), Italy
Laboratory of Thermodynamics in Emerging Technologies, Department of Mechanical and Process Engineering, ETH Zürich, Zürich, Switzerland
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Marco Marengo, PhD
Marco Marengo, PhD
*
Department of Engineering, University of Bergamo, Dalmine (BG), Italy
School of Computing, Engineering and Mathematics, University of Brighton, Brighton, UK
*Corresponding author e-mail address: m.marengo@brighton.ac.uk
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*Corresponding author e-mail address: m.marengo@brighton.ac.uk
Publisher: Emerald Publishing
Received:
January 07 2014
Accepted:
May 02 2014
Online ISSN: 2050-6260
Print ISSN: 2050-6252
ICE Publishing: All rights reserved
2015
Surface Innovations (2015) 3 (1): 49–60.
Article history
Received:
January 07 2014
Accepted:
May 02 2014
Citation
Malavasi I, Bernagozzi I, Antonini C, Marengo M (2015), "Assessing durability of superhydrophobic surfaces". Surface Innovations, Vol. 3 No. 1 pp. 49–60, doi: https://doi.org/10.1680/si.14.00001
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