The silver ion environment and the microstructural rearrangement of Ag+-Na+ ion-exchanged glasses were investigated by means of micro-Raman and photoluminescence spectroscopies. The samples were produced by immersing borosilicate glasses in NaNO3: AgNO3 molten salts baths with different molar ratios of silver nitrate. The modifications of the silica network microstructure were inspected by analysis of the Raman peak at about 1100 cm^1, and the evolution with the silver concentration at the glass surface of the spectral components related to the different silica tetrahedral groups was studied. The formation of silver metal nanoparticles was inferred from the occurrence of the low-frequency Raman peak due to confinement of acoustic vibrations...
Ion exchange process is widely used to dope silicate glass layers with silver for several applicatio...
A silicate glass of chemical composition 20Li2O, 13CaO, 3Al2O3, 4B2O3, 60SiO2 (mol%) was subjected t...
Glass layers for planar light waveguides prepared by Ag–Na ion exchange of different silicate glasse...
The silver ion environment and the microstructural rearrangement of Ag+-Na+ ion-exchanged glasses we...
The silver ion environment and the micro-structural rearrangement of Ag+ – Na+ ion exchanged glasses...
The structural modification of the host matrix induced by external treatments in ion-exchanged silic...
The ion exchange process is widely used to dope silicate glass layers with silver, aimed at controll...
The ion-exchange process is widely used to dope silicate glass layers with silver, aimed at controll...
The growth and distribution of silver nanoparticles in ion exchanged glasses induced by thermal trea...
Ion exchange process is widely used to dope silicate glass layers with silver for several applicatio...
Controlled precipitation of metal nanostructures into glassy matrices have demonstrated to be a vali...
Ion exchange process is widely used to dope silicate glass layers with silver for several applicatio...
A silicate glass of chemical composition 20Li2O, 13CaO, 3Al2O3, 4B2O3, 60SiO2 (mol%) was subjected t...
Glass layers for planar light waveguides prepared by Ag–Na ion exchange of different silicate glasse...
The silver ion environment and the microstructural rearrangement of Ag+-Na+ ion-exchanged glasses we...
The silver ion environment and the micro-structural rearrangement of Ag+ – Na+ ion exchanged glasses...
The structural modification of the host matrix induced by external treatments in ion-exchanged silic...
The ion exchange process is widely used to dope silicate glass layers with silver, aimed at controll...
The ion-exchange process is widely used to dope silicate glass layers with silver, aimed at controll...
The growth and distribution of silver nanoparticles in ion exchanged glasses induced by thermal trea...
Ion exchange process is widely used to dope silicate glass layers with silver for several applicatio...
Controlled precipitation of metal nanostructures into glassy matrices have demonstrated to be a vali...
Ion exchange process is widely used to dope silicate glass layers with silver for several applicatio...
A silicate glass of chemical composition 20Li2O, 13CaO, 3Al2O3, 4B2O3, 60SiO2 (mol%) was subjected t...
Glass layers for planar light waveguides prepared by Ag–Na ion exchange of different silicate glasse...