none6The oxygen barrier properties of composite materials, consisting of a 45 μm thick LDPE substrate coated by a thin layer (0.7–1 μm) of new hybrid organic–inorganic materials based on SiO2 and PE-PEG block copolymers, have been characterized at 35 and 50 °C. A significant decrease (25–40%) of the oxygen transfer rate has been observed for coated samples with respect to bare substrate both at 35 and 50 °C. The effects on the coating permeability of organic–inorganic ratio, molecular weight of the PE-PEG block copolymers and temperature are discussed.mixedM. Minelli; M.G. De Angelis; F. Doghieri; M. Marini; M. Toselli; F. PilatiM. Minelli; M.G. De Angelis; F. Doghieri; M. Marini; M. Toselli; F. Pilat
none3LDPE films have been coated with single or bi-layer hybrid coatings formed through sol-gel reac...
Recent packaging breakthroughs have demonstrated that placing a small amount of highly efficient oxy...
Hybrid organic-inorganic nanocomposites containing PEO segments linked to a methacrylate network wer...
The oxygen barrier properties of composite materials, consisting of a 45 \u3bcm thick LDPE substrate...
The oxygen barrier properties of composite materials, consisting of a LDPE substrate coated by a th...
The oxygen barrier properties of composite materials, consisting of a 45 μm thick LDPE substrat...
The oxygen permeability of composite materials, consisting of a LDPE substrate coated with a thin la...
The oxygen permeability of composite materials, consisting of a LDPE substrate coated with a thin la...
none6The oxygen transport properties of LDPE films coated with different kinds of hybrid coatings we...
The permeability and diffusivity of oxygen in films of PET coated with a thin layer of a hybrid org...
With a new kind of barrier coating material, namely inorganic-organic polymers, it is possible to ob...
A comprehensive study of the gas barrier properties of hybrid organic–inorganic coatings formed by ...
With barrier coating materials, namely, hybrid polymers (ORMOCER®), it is possible to obtain excell...
Oxygen scavengers are used to reduce the oxygen permeation of packaging (active barrier) and to abso...
none3LDPE films have been coated with single or bi-layer hybrid coatings formed through sol-gel reac...
Recent packaging breakthroughs have demonstrated that placing a small amount of highly efficient oxy...
Hybrid organic-inorganic nanocomposites containing PEO segments linked to a methacrylate network wer...
The oxygen barrier properties of composite materials, consisting of a 45 \u3bcm thick LDPE substrate...
The oxygen barrier properties of composite materials, consisting of a LDPE substrate coated by a th...
The oxygen barrier properties of composite materials, consisting of a 45 μm thick LDPE substrat...
The oxygen permeability of composite materials, consisting of a LDPE substrate coated with a thin la...
The oxygen permeability of composite materials, consisting of a LDPE substrate coated with a thin la...
none6The oxygen transport properties of LDPE films coated with different kinds of hybrid coatings we...
The permeability and diffusivity of oxygen in films of PET coated with a thin layer of a hybrid org...
With a new kind of barrier coating material, namely inorganic-organic polymers, it is possible to ob...
A comprehensive study of the gas barrier properties of hybrid organic–inorganic coatings formed by ...
With barrier coating materials, namely, hybrid polymers (ORMOCER®), it is possible to obtain excell...
Oxygen scavengers are used to reduce the oxygen permeation of packaging (active barrier) and to abso...
none3LDPE films have been coated with single or bi-layer hybrid coatings formed through sol-gel reac...
Recent packaging breakthroughs have demonstrated that placing a small amount of highly efficient oxy...
Hybrid organic-inorganic nanocomposites containing PEO segments linked to a methacrylate network wer...