The formation of argentic clusters and very small Ag nanoparticles of 0.5 to 2 nm size in commercial soda-lime glass silver-doped by Ag/Na ion exchange in a mixed nitrate melt has been studied by electron microscopy and EXAFS. Particles formation was induced already during the ion exchange procedure, or by subsequent ion irradiation with 1.5 MeV He+ or 3 MeV Au+. The presence of nanoparticles was also macroscopically revealed by their surface plasmon resonance. The structural characterization indicates that specific configurations of silver oxide-like structures, so-called argentic clusters, are involved in the initial stage of nanoparticles formation
Using spectroscopic and small angle X-ray scattering analyses, temporal evolution of ionic and neut...
Ion-exchanged glass samples were obtained by immersing soda-lime slides in molten salt baths of mola...
A silicate glass of chemical composition 20Li2O, 13CaO, 3Al2O3, 4B2O3, 60SiO2 (mol%) was subjected t...
The formation of argentic clusters and very small Ag nanoparticles of 0.5 to 2 nm size in commercial...
We investigated the formation of very small Ag nanoparticles of 1–2 nm size in soda-lime glass with ...
Silver metal clusters have been formed in soda lime glass by high-energy heavy ion irra-diation at I...
The formation of silver metal clusters have been studied in ion exchanged soda lime glass following ...
The techniques of silver-sodium ion exchange and Ag+ ion implantation in glass have been successfull...
The formation of silver-metal clusters has been studied in ion-exchanged soda-lime glass following s...
In any given matrix control over the final particle size distribution requires a constitutive unders...
Extended X-ray absorption fine structure analysis is used to determine the silver local environment ...
Silver metal clusters have been formed in soda lime glass by high-energy heavy-ion irradiation at IS...
In any given matrix control over the final particle size distribution requires a constitutive unders...
In any given matrix control over the final particle size distribution requires a constitutive unders...
Silver nanocluster precipitation in AR Schott glass by subsequently silver ionic exchange and helium...
Using spectroscopic and small angle X-ray scattering analyses, temporal evolution of ionic and neut...
Ion-exchanged glass samples were obtained by immersing soda-lime slides in molten salt baths of mola...
A silicate glass of chemical composition 20Li2O, 13CaO, 3Al2O3, 4B2O3, 60SiO2 (mol%) was subjected t...
The formation of argentic clusters and very small Ag nanoparticles of 0.5 to 2 nm size in commercial...
We investigated the formation of very small Ag nanoparticles of 1–2 nm size in soda-lime glass with ...
Silver metal clusters have been formed in soda lime glass by high-energy heavy ion irra-diation at I...
The formation of silver metal clusters have been studied in ion exchanged soda lime glass following ...
The techniques of silver-sodium ion exchange and Ag+ ion implantation in glass have been successfull...
The formation of silver-metal clusters has been studied in ion-exchanged soda-lime glass following s...
In any given matrix control over the final particle size distribution requires a constitutive unders...
Extended X-ray absorption fine structure analysis is used to determine the silver local environment ...
Silver metal clusters have been formed in soda lime glass by high-energy heavy-ion irradiation at IS...
In any given matrix control over the final particle size distribution requires a constitutive unders...
In any given matrix control over the final particle size distribution requires a constitutive unders...
Silver nanocluster precipitation in AR Schott glass by subsequently silver ionic exchange and helium...
Using spectroscopic and small angle X-ray scattering analyses, temporal evolution of ionic and neut...
Ion-exchanged glass samples were obtained by immersing soda-lime slides in molten salt baths of mola...
A silicate glass of chemical composition 20Li2O, 13CaO, 3Al2O3, 4B2O3, 60SiO2 (mol%) was subjected t...