Nanostructures have a wide range of potential applications in industry because they can impart novel mechanical or functional properties to coatings such as abrasion resistance, UV shielding, superhydrophobicity. In this work we present a method for the fabrication of nanostructured coatings with improved mechanical properties, in which sol-gel nanoparticles are deposited on a surface and embedded in a ceramic film by plasma-enhanced chemical vapour deposition. This synthetic strategy is applied to the fabrication of transparent nanostructured antiscratch coatings.

Fabrication of functional nanostructured coatings by a combined sol-gel and plasma-enhanced chemical vapour deposition method

COSTACURTA, STEFANO;ZANCHETTA, ERIKA;GUGLIELMI, MASSIMO;PATELLI, ALESSANDRO
2011

Abstract

Nanostructures have a wide range of potential applications in industry because they can impart novel mechanical or functional properties to coatings such as abrasion resistance, UV shielding, superhydrophobicity. In this work we present a method for the fabrication of nanostructured coatings with improved mechanical properties, in which sol-gel nanoparticles are deposited on a surface and embedded in a ceramic film by plasma-enhanced chemical vapour deposition. This synthetic strategy is applied to the fabrication of transparent nanostructured antiscratch coatings.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11577/2493950
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