"The alloy Au–Ag system is an important noble bimetallic phase, both historically (as “Electrum”) and now especially in nanotechnology, as it is applied in catalysis and nanomedicine. To comprehend the structural characteristics and the thermodynamic stability of this alloy, a knowledge of its phase diagram is required that considers explicitly its size and shape (morphology) dependence. However, as the experimental determination remains quite challenging at the nanoscale, theoretical guidance can provide significant advantages. Using a regular solution model within a nanothermodynamic approach to evaluate the size effect on all the parameters (melting temperature, melting enthalpy, and interaction parameters in both phases), the nanophase ...
In this chapter, experimental and theoretical studies on surface segregation in Ag-Au systems, inclu...
If bulk phase diagrams of binary alloys are now well known, it is not the case for nanoalloys, which...
Bimetallic nanoparticles are highly relevant for applications in, e.g., catalysis, sensing, and ener...
The alloy Au–Ag system is an important noble bimetallic phase, both historically (as “Electrum”) and...
Gold–copper (Au–Cu) phases were employed already by pre-Columbian civilizations, essentially in deco...
Gold–copper (Au–Cu) phases were employed already by pre-Columbian civilizations, essentially in deco...
Gold–copper (Au–Cu) phases were employed already by pre-Columbian civilizations, essentially in deco...
Gold–copper (Au–Cu) phases were employed already by pre-Columbian civilizations, essentially in deco...
Gold–copper (Au–Cu) phases were employed already by pre-Columbian civilizations, essentially in deco...
Significant elemental segregation is shown to exist within individual hollow silver–gold (Ag–Au) bim...
Au144-xCux(SR)60 alloy nanomolecules were synthesized and characterized by using ESI-MS to atomic pr...
Au144-xCux(SR)60 alloy nanomolecules were synthesized and characterized by using ESI-MS to atomic pr...
Au144-xCux(SR)60 alloy nanomolecules were synthesized and characterized by using ESI-MS to atomic pr...
The ability to control nanoscale alloying and phase segregation properties is important for the expl...
The catalytic performance and optical properties of bimetallic nanoparticles critically depend on th...
In this chapter, experimental and theoretical studies on surface segregation in Ag-Au systems, inclu...
If bulk phase diagrams of binary alloys are now well known, it is not the case for nanoalloys, which...
Bimetallic nanoparticles are highly relevant for applications in, e.g., catalysis, sensing, and ener...
The alloy Au–Ag system is an important noble bimetallic phase, both historically (as “Electrum”) and...
Gold–copper (Au–Cu) phases were employed already by pre-Columbian civilizations, essentially in deco...
Gold–copper (Au–Cu) phases were employed already by pre-Columbian civilizations, essentially in deco...
Gold–copper (Au–Cu) phases were employed already by pre-Columbian civilizations, essentially in deco...
Gold–copper (Au–Cu) phases were employed already by pre-Columbian civilizations, essentially in deco...
Gold–copper (Au–Cu) phases were employed already by pre-Columbian civilizations, essentially in deco...
Significant elemental segregation is shown to exist within individual hollow silver–gold (Ag–Au) bim...
Au144-xCux(SR)60 alloy nanomolecules were synthesized and characterized by using ESI-MS to atomic pr...
Au144-xCux(SR)60 alloy nanomolecules were synthesized and characterized by using ESI-MS to atomic pr...
Au144-xCux(SR)60 alloy nanomolecules were synthesized and characterized by using ESI-MS to atomic pr...
The ability to control nanoscale alloying and phase segregation properties is important for the expl...
The catalytic performance and optical properties of bimetallic nanoparticles critically depend on th...
In this chapter, experimental and theoretical studies on surface segregation in Ag-Au systems, inclu...
If bulk phase diagrams of binary alloys are now well known, it is not the case for nanoalloys, which...
Bimetallic nanoparticles are highly relevant for applications in, e.g., catalysis, sensing, and ener...