Organic–inorganic hybrid materials were prepared using the sol–gel process in order to improve the scratch resistance of poly(methyl methacrylate) (PMMA) substrates. Sol–gel solutions based on tetraethoxysilane and α,ω-triethoxysilane terminated polycaprolactone with two different organic / inorganic weight ratios (5 /5 and 7/ 3) were applied and cured on the substrate. The final coatings consisted of interconnected nanodomains of silica and polycaprolactone, which increased in size and resulted into microdomains when the content of organic phase increased. The surface energies of coated and uncoated PMMA, and the cohesive and adhesive properties of the hybrid coatings were examined using contact angle measurements, and fragmentation tests,...
Organic–inorganic hybrid coatings, obtained through the sol–gel chemistry from tetraethoxysilane and...
Organic–inorganic hybrid coatings, obtained through the sol–gel chemistry from tetraeth- oxysilane a...
Organic-inorganic hybrid coatings, obtained through the sol-gel chemistry from tetraethoxysilane and...
Organic-inorganic hybrid materials were prepared using the sol-gel process in order to improve the s...
Organic-inorganic hybrid materials were prepared using the sol-gel process in order to improve the s...
Organic-inorganic hybrid materials (also known as ceramers or phase-interconnected nanocomposites) w...
Organic–inorganic hybrid materials were prepared through the sol–gel approach starting from tetraeth...
Organic-inorganic hybrid materials were prepared through the sol\u2013gel approach starting from tet...
Organic–inorganic hybrid coatings were obtained by a dual-curing process combining the sol–gel react...
Scratch resistant silica-based hybrid coatings on polycarbonate substrates were formed by dip-coatin...
International audienceHybrid silica coatings based on 3- glycidoxypropyltriethoxysilane (GPTES), tet...
none4Transparent hybrid coatings for plastic substrates were prepared by the sol-gel process, using ...
Organic–inorganic hybrid coatings, obtained through the sol–gel chemistry from tetraethoxysilane and...
Organic–inorganic hybrid coatings, obtained through the sol–gel chemistry from tetraeth- oxysilane a...
Organic-inorganic hybrid coatings, obtained through the sol-gel chemistry from tetraethoxysilane and...
Organic-inorganic hybrid materials were prepared using the sol-gel process in order to improve the s...
Organic-inorganic hybrid materials were prepared using the sol-gel process in order to improve the s...
Organic-inorganic hybrid materials (also known as ceramers or phase-interconnected nanocomposites) w...
Organic–inorganic hybrid materials were prepared through the sol–gel approach starting from tetraeth...
Organic-inorganic hybrid materials were prepared through the sol\u2013gel approach starting from tet...
Organic–inorganic hybrid coatings were obtained by a dual-curing process combining the sol–gel react...
Scratch resistant silica-based hybrid coatings on polycarbonate substrates were formed by dip-coatin...
International audienceHybrid silica coatings based on 3- glycidoxypropyltriethoxysilane (GPTES), tet...
none4Transparent hybrid coatings for plastic substrates were prepared by the sol-gel process, using ...
Organic–inorganic hybrid coatings, obtained through the sol–gel chemistry from tetraethoxysilane and...
Organic–inorganic hybrid coatings, obtained through the sol–gel chemistry from tetraeth- oxysilane a...
Organic-inorganic hybrid coatings, obtained through the sol-gel chemistry from tetraethoxysilane and...