Multiple implantations of Au and Ag ions in pure silica and Er-doped silica matrices have been performed to promote the formation of small Au–Ag alloy clusters. Upon annealing in N2 atmosphere at 600 C the structural investigation based on X-ray absorption spectroscopy at Au L3-edge detected for both cases the formation of Au–Ag alloy clusters, whose size is likely below 1 nm. The alloy composition is rich in Au; a minor part of Au atoms remains dispersed into the matrix and oxidized. In the Er-doped silica, the presence of these small alloy aggregates promotes a strong enhancement of the Er3+ luminescence at 1.54 microm, that is more marked with respect to similarly produced layers where only pure Au sub-nanometer clusters were present
The occurrence of a very efficient non-resonant energy transfer process forming ultrasmall Au\u2013A...
Ion implantation into silica is used to produce Au subnanometer metal clusters, whose size can be fi...
Silica films co-implanted with Er and Au ions show an enhancement of rare earth photoluminescence af...
Multiple implantations of Au and Ag ions in pure silica and Er-doped silica matrices have been perfo...
Multiple implantations of Au and Ag ions in pure silica and Er-doped silica matrices have been perfo...
Multiple implantations of Au and Ag ions in pure silica and Er-doped silica matrices have been perfo...
We present recent results on the occurrence of an Er fluorescence sensitization induced by ultra-sma...
The mechanisms of the Er3+ photoluminescence enhancement induced by ultrasmall Au nanoclusters (made...
The mechanisms of the Er(3+) photoluminescence enhancement induced by ultrasmall Au nanoclusters (ma...
International audienceThe very early steps of Au metal cluster formation in Er-doped silica have bee...
The very early steps of Au metal cluster formation in Er-doped silica have been investigated by high...
The Au site in Er + Au-implanted silica has been investigated by X-ray absorption spectroscopy, afte...
The occurrence of a very efficient non-resonant energy transfer process forming ultrasmall Au\u2013A...
Ion implantation into silica is used to produce Au subnanometer metal clusters, whose size can be fi...
Silica films co-implanted with Er and Au ions show an enhancement of rare earth photoluminescence af...
Multiple implantations of Au and Ag ions in pure silica and Er-doped silica matrices have been perfo...
Multiple implantations of Au and Ag ions in pure silica and Er-doped silica matrices have been perfo...
Multiple implantations of Au and Ag ions in pure silica and Er-doped silica matrices have been perfo...
We present recent results on the occurrence of an Er fluorescence sensitization induced by ultra-sma...
The mechanisms of the Er3+ photoluminescence enhancement induced by ultrasmall Au nanoclusters (made...
The mechanisms of the Er(3+) photoluminescence enhancement induced by ultrasmall Au nanoclusters (ma...
International audienceThe very early steps of Au metal cluster formation in Er-doped silica have bee...
The very early steps of Au metal cluster formation in Er-doped silica have been investigated by high...
The Au site in Er + Au-implanted silica has been investigated by X-ray absorption spectroscopy, afte...
The occurrence of a very efficient non-resonant energy transfer process forming ultrasmall Au\u2013A...
Ion implantation into silica is used to produce Au subnanometer metal clusters, whose size can be fi...
Silica films co-implanted with Er and Au ions show an enhancement of rare earth photoluminescence af...