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Wetting and superhydrophobic properties of PECVD grown hydrocarbon and fluorinated-hydrocarbon coatings

Sarkar Dilip K., Farzaneh Masoud et Paynter Royston W.. (2010). Wetting and superhydrophobic properties of PECVD grown hydrocarbon and fluorinated-hydrocarbon coatings. Applied Surface Science, 256, (11), p. 3698-3701.

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URL officielle: http://dx.doi.org/doi:10.1016/j.apsusc.2009.12.049

Résumé

Wetting characteristics of micro-nanorough substrates of aluminum and smooth silicon substrates have been studied and compared by depositing hydrocarbon and fluorinated-hydrocarbon coatings via plasma enhanced chemical vapor deposition (PECVD) technique using a mixture of Ar, CH4 and C2F6 gases. The water contact angles on the hydrocarbon and fluorinated-hydrocarbon coatings deposited on silicon substrates were found to be 72° and 105°, respectively. However, the micro-nanorough aluminum substrates demonstrated superhydrophobic properties upon coatings with fluorinated-hydrocarbon providing a water contact angle of ∼165° and contact angle hysteresis below 2° with water drops rolling off from those surfaces while the same substrates showed contact angle of 135° with water drops sticking on those surfaces. The superhydrophobic properties is due to the high fluorine content in the fluorinatedhydrocarbon coatings of ∼36 at.%, as investigated by X-ray photoelectron spectroscopy (XPS), by lowering the surface energy of the micro-nanorough aluminum substrates.

Type de document:Article publié dans une revue avec comité d'évaluation
Volume:256
Numéro:11
Pages:p. 3698-3701
Version évaluée par les pairs:Oui
Date:15 Mars 2010
Sujets:Sciences naturelles et génie > Génie > Génie des matériaux et génie métallurgique
Département, module, service et unité de recherche:Départements et modules > Département des sciences appliquées > Module d'ingénierie
Mots-clés:Superhydrophobic, fluorinated-hydrocarbon coatings, AFM, SEM, superhydrophobes, Revêtements hydrocarbures-fluorés
Déposé le:18 sept. 2015 02:13
Dernière modification:09 déc. 2016 13:39
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