Hybrid transparent coatings based on zirconia nanoparticle fillers and epoxy resin were designed to increase scratch resistance of commodity polymers without impairing their optical properties. Suspensions of nano-crystalline ZrO2in benzyl alcohol were synthesized via a versatile non-hydrolytic sol-gel process using ZrCl4as precursor. The obtained ZrO2nanoparticles showed a crystalline structure attributable to a tetragonal phase and an average particle size of 2Â nm. ZrO2nanoparticles, suspended in tert-butanol, were mixed with a commercial epoxy resin (5 and 10%wt.). The organic solvent was then evaporated and hybrid composites were deposited on polycarbonate and poly(methyl methacrylate). The obtained coatings showed a homogeneous adhesion and a negligible effect on the transparency of these polymers. An increased scratch-resistance was obtained by increasing the ZrO2nanoparticles content.
Synthesis and characterization of scratch-resistant hybrid coatings based on non-hydrolytic sol-gel ZrO2 nanoparticles
Tana, Francesca;Contini, Davide;Cigada, Alberto;VALENTE, TEODORO;De Nardo, Luigi;
2017-01-01
Abstract
Hybrid transparent coatings based on zirconia nanoparticle fillers and epoxy resin were designed to increase scratch resistance of commodity polymers without impairing their optical properties. Suspensions of nano-crystalline ZrO2in benzyl alcohol were synthesized via a versatile non-hydrolytic sol-gel process using ZrCl4as precursor. The obtained ZrO2nanoparticles showed a crystalline structure attributable to a tetragonal phase and an average particle size of 2Â nm. ZrO2nanoparticles, suspended in tert-butanol, were mixed with a commercial epoxy resin (5 and 10%wt.). The organic solvent was then evaporated and hybrid composites were deposited on polycarbonate and poly(methyl methacrylate). The obtained coatings showed a homogeneous adhesion and a negligible effect on the transparency of these polymers. An increased scratch-resistance was obtained by increasing the ZrO2nanoparticles content.File | Dimensione | Formato | |
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