In isolated bimetallic nanoscale systems the limit amount of matter and surface-induced size effects can change the thermodynamics of first-order phase transformation. In this paper we present theoretical modification of Gibbs free energy concept describing first-order phase transformation of binary alloyed nanoparticles taking into account size effects as well as depletion and hysteresis effects. In such a way the hysteresis in a form of nonsymmetry for forth and back transforming paths takes place; compositional splitting and the loops-like splitted path on the size dependent temperature–composition phase diagram occur. Our calculations for individual Cu–Ni nanoparticle show that one must differentiate the solubility curves and the equili...
High-resolution characterization techniques are combined with thermodynamic calculations (CALPHAD) t...
Compared to alloy bulk phase diagrams, the experimental determination of phase diagrams for alloy na...
Shape, stability and chemical ordering patterns of CuNi nanoalloys are studied as a function of size...
This paper explores phase formation and phase stability in free nanoparticles of binary alloys. A pr...
A study on alloy phase formation in nanometer-sized particles by insitu transmission-electron micros...
Phase diagrams of multi-component systems are critical for the development and engineering of materi...
A study on alloy phase formation in nanometer-sized particles by insitu transmission-electron micros...
The nanoparticle phase diagram of an immiscible system is studied at the atomic level. Cu-Ag cluster...
We show how an order-disorder phase transition in a two-dimensional system can discontinuously alter...
Phase diagrams of multi-component systems are critical for the development and engineering of materi...
The control of structural and chemical transitions in bimetallic nanoalloys at finite temperatures i...
The instability of nanocrystalline materials against both grain growth and bulk phase separation is ...
In this paper, a new theoretical two-phase (solid–liquid) type model of melting temperature has deve...
The Ag-Ni system is characterized by large differences in atomic sizes (14%) and a positive heat of ...
High-resolution characterization techniques are combined with thermodynamic calculations (CALPHAD) t...
High-resolution characterization techniques are combined with thermodynamic calculations (CALPHAD) t...
Compared to alloy bulk phase diagrams, the experimental determination of phase diagrams for alloy na...
Shape, stability and chemical ordering patterns of CuNi nanoalloys are studied as a function of size...
This paper explores phase formation and phase stability in free nanoparticles of binary alloys. A pr...
A study on alloy phase formation in nanometer-sized particles by insitu transmission-electron micros...
Phase diagrams of multi-component systems are critical for the development and engineering of materi...
A study on alloy phase formation in nanometer-sized particles by insitu transmission-electron micros...
The nanoparticle phase diagram of an immiscible system is studied at the atomic level. Cu-Ag cluster...
We show how an order-disorder phase transition in a two-dimensional system can discontinuously alter...
Phase diagrams of multi-component systems are critical for the development and engineering of materi...
The control of structural and chemical transitions in bimetallic nanoalloys at finite temperatures i...
The instability of nanocrystalline materials against both grain growth and bulk phase separation is ...
In this paper, a new theoretical two-phase (solid–liquid) type model of melting temperature has deve...
The Ag-Ni system is characterized by large differences in atomic sizes (14%) and a positive heat of ...
High-resolution characterization techniques are combined with thermodynamic calculations (CALPHAD) t...
High-resolution characterization techniques are combined with thermodynamic calculations (CALPHAD) t...
Compared to alloy bulk phase diagrams, the experimental determination of phase diagrams for alloy na...
Shape, stability and chemical ordering patterns of CuNi nanoalloys are studied as a function of size...