Three sets of nanocomposite films consisting of different atomic concentrations of Ag dispersed in a TiO2 dielectric matrix were deposited by DC reactive magnetron sputtering, and subjected to several thermal annealing experiments in vacuum, for temperatures ranging from 200 to 600 ºC. The main goal of the present study is to analyse the optical properties of the as-deposited and annealed films in order to clarify the role of Ag inclusions in the TiO2 dielectric matrix. The influence of the thermal annealing in the structural and morphological evolution was then correlated with the changes in the optical behavior of the samples. Significant structural and morphological changes were observed, consisting on the crystallization of Ag and their...
It is known that TiO2 is a wide-gap semiconductor, which due to its low cost and photocatalytic prop...
Gold nanoparticles were dispersed in two different dielectric matrices, TiO2 and Al2O3, using magnet...
Gold nanoparticles were dispersed in two different dielectric matrices, TiO2 and Al2O3, using magnet...
Three sets of nanocomposite films consisting of different atomic concentrations of Ag dispersed in a...
Noble metal powders containing gold and silver have been used for many centuries, providing differen...
Noble metal powders containing gold and silver have been used for many centuries, providing differen...
Noble metal powders containing gold and silver have been used for many centuries, providing differen...
Nanocomposite thin films composed of a TiO2 matrix doped with noble metals nanoparticles (MNPS), Au ...
Two sets of nanocomposite films consisting of different atomic concentrations of Au dispersed in a T...
A set of nanocomposite thin films consisting of Au nanoclusters dispersed in a TiO2 dielectric matri...
Nanocomposites consisting of a dielectric matrix, such as TiO2, with embedded noble metal nanopartic...
Two sets of nanocomposite films consisting about 4,5 at.% and 51 at.% concentrations of Au dispersed...
Large-scale uniform Ag@TiO2 films was prepared by RF magnetron sputtering in pure Ar plasma using po...
Large-scale uniform Ag@TiO2 films was prepared by RF magnetron sputtering in pure Ar plasma using po...
The present work is devoted to the optical properties of Au:TiO2 thin films in order to clarify the ...
It is known that TiO2 is a wide-gap semiconductor, which due to its low cost and photocatalytic prop...
Gold nanoparticles were dispersed in two different dielectric matrices, TiO2 and Al2O3, using magnet...
Gold nanoparticles were dispersed in two different dielectric matrices, TiO2 and Al2O3, using magnet...
Three sets of nanocomposite films consisting of different atomic concentrations of Ag dispersed in a...
Noble metal powders containing gold and silver have been used for many centuries, providing differen...
Noble metal powders containing gold and silver have been used for many centuries, providing differen...
Noble metal powders containing gold and silver have been used for many centuries, providing differen...
Nanocomposite thin films composed of a TiO2 matrix doped with noble metals nanoparticles (MNPS), Au ...
Two sets of nanocomposite films consisting of different atomic concentrations of Au dispersed in a T...
A set of nanocomposite thin films consisting of Au nanoclusters dispersed in a TiO2 dielectric matri...
Nanocomposites consisting of a dielectric matrix, such as TiO2, with embedded noble metal nanopartic...
Two sets of nanocomposite films consisting about 4,5 at.% and 51 at.% concentrations of Au dispersed...
Large-scale uniform Ag@TiO2 films was prepared by RF magnetron sputtering in pure Ar plasma using po...
Large-scale uniform Ag@TiO2 films was prepared by RF magnetron sputtering in pure Ar plasma using po...
The present work is devoted to the optical properties of Au:TiO2 thin films in order to clarify the ...
It is known that TiO2 is a wide-gap semiconductor, which due to its low cost and photocatalytic prop...
Gold nanoparticles were dispersed in two different dielectric matrices, TiO2 and Al2O3, using magnet...
Gold nanoparticles were dispersed in two different dielectric matrices, TiO2 and Al2O3, using magnet...