The effect of thermal or laser annealing on the evolution of binary alloy clusters in sequentially ion-implanted Au/Cu or Ag/Au silica glasses has been studied. In the case of Au/Cu system the selective effect of oxidizing atmosphere on alloy decomposition has been investigated as a function of the temperature and time, evidencing that alloy decomposition takes place with Cu oxidation. In the AuAg system the decomposition process is slower than in the AuCu case, due to lower silver-oxygen reactivity. On the contrary, laser annealing is able to promote alloy formation and/or composition modification even in systems with partially or completely separated components
Metal nanoclusters (NCs) embedded in insulating matrices have received in the last decade an increas...
The control over size and composition of nanometer sized metallic clusters in SiO2 is of paramount i...
We have investigated the dynamics of the compositional and structural evolution of solid solution Pd...
The effect of thermal or laser annealing on the evolution of binary alloy clusters in sequentially i...
The evolution of binary alloy clusters in sequentially ion-implanted Au/Cu or Ag/Au silica glasses h...
We have investigated the effect of thermal annealing in reducing and oxidizing atmospheres on two sy...
We have investigated the effect of thermal annealing in reducing and oxidizing atmospheres on two sy...
The formation of binary alloy clusters in sequentially ion-implanted Au\ub1Cu or Au\ub1Ag silica gla...
The formation of binary alloy clusters in sequentially ion-implanted Au–Cu silica glass has been stu...
The preparation of metal alloy and monoelemental nanoclusters in silica by Ag, Cu ion sequential imp...
In this work we report on the formation and stability under thermal annealing of Pd\u2013Cu and Pd\u...
Sequential ion implantation has been used to synthesize Pd-based alloy nanoclusters in SiO2. Three s...
Bimetallic Au\u2013Cu and Au\u2013Ag nanometer sized clusters obtained by sequential ion implantatio...
In the last decade, metal nanoclusters (NCs) embedded in insulating matrices have received increasin...
Sequential ion implantation of two metal species in silica glass may give rise to the formation of a...
Metal nanoclusters (NCs) embedded in insulating matrices have received in the last decade an increas...
The control over size and composition of nanometer sized metallic clusters in SiO2 is of paramount i...
We have investigated the dynamics of the compositional and structural evolution of solid solution Pd...
The effect of thermal or laser annealing on the evolution of binary alloy clusters in sequentially i...
The evolution of binary alloy clusters in sequentially ion-implanted Au/Cu or Ag/Au silica glasses h...
We have investigated the effect of thermal annealing in reducing and oxidizing atmospheres on two sy...
We have investigated the effect of thermal annealing in reducing and oxidizing atmospheres on two sy...
The formation of binary alloy clusters in sequentially ion-implanted Au\ub1Cu or Au\ub1Ag silica gla...
The formation of binary alloy clusters in sequentially ion-implanted Au–Cu silica glass has been stu...
The preparation of metal alloy and monoelemental nanoclusters in silica by Ag, Cu ion sequential imp...
In this work we report on the formation and stability under thermal annealing of Pd\u2013Cu and Pd\u...
Sequential ion implantation has been used to synthesize Pd-based alloy nanoclusters in SiO2. Three s...
Bimetallic Au\u2013Cu and Au\u2013Ag nanometer sized clusters obtained by sequential ion implantatio...
In the last decade, metal nanoclusters (NCs) embedded in insulating matrices have received increasin...
Sequential ion implantation of two metal species in silica glass may give rise to the formation of a...
Metal nanoclusters (NCs) embedded in insulating matrices have received in the last decade an increas...
The control over size and composition of nanometer sized metallic clusters in SiO2 is of paramount i...
We have investigated the dynamics of the compositional and structural evolution of solid solution Pd...