A model with local interparticle diffusion is considered, in contrast with the classical model of Ostwald ripening (the mean field model) and its multiparticle extensions which have long range interactions. Simulations of the evolution of the system show that the asymptotic behavior obeys a power law. It is also found that the scaled asymptotic distribution of particle radii is broader than in the previous models, even at low initial coverage where the multiparticle models have the same narrow scaled distribution as the mean field model. The scaling properties are independent of the initial particle size distribution.
AbstractWe consider a dilute mixture of a finite number of particles and we are interested in the co...
Ostwald ripening occurs near equilibrium conditions when larger clusters grow at the expense of diss...
Due to high surface area, supported metal nanoparticles are thermodynamically prone to sintering. Th...
A model with local interparticle diffusion is considered, in contrast with the classical model of Os...
Using two-dimensional Ag adatom islands on Ag(111) as a model system, we study the importance of loc...
In this paper we derive a model for the evolution of the particle radius density for a system of man...
Ostwald ripening under a temperature gradient in binary model alloys is investigated using a quantit...
A theoretical approach to the Ostwald ripening of droplets is presented in dimension D_2. A mean-fie...
We present a new theoretical approach to Ostwald ripening of droplets for both two- and three-dimens...
The dynamics of Ostwald ripening is treated by cluster distribution kinetics represented by a popula...
International audienceThanks to the unidimensional model of Ostwald ripening proposed here, the most...
This approach assumes three functions independently acting on a set of microparticles. The first one...
The presented theoretical treatment of interface-controlled Ostwald ripening of supported metal nano...
Temperature influences Ostwald ripening through its effect on interfacial energy, growth rate coeffi...
During Ostwald ripening, the growth of larger patches occurs at the expense of smaller ones via deta...
AbstractWe consider a dilute mixture of a finite number of particles and we are interested in the co...
Ostwald ripening occurs near equilibrium conditions when larger clusters grow at the expense of diss...
Due to high surface area, supported metal nanoparticles are thermodynamically prone to sintering. Th...
A model with local interparticle diffusion is considered, in contrast with the classical model of Os...
Using two-dimensional Ag adatom islands on Ag(111) as a model system, we study the importance of loc...
In this paper we derive a model for the evolution of the particle radius density for a system of man...
Ostwald ripening under a temperature gradient in binary model alloys is investigated using a quantit...
A theoretical approach to the Ostwald ripening of droplets is presented in dimension D_2. A mean-fie...
We present a new theoretical approach to Ostwald ripening of droplets for both two- and three-dimens...
The dynamics of Ostwald ripening is treated by cluster distribution kinetics represented by a popula...
International audienceThanks to the unidimensional model of Ostwald ripening proposed here, the most...
This approach assumes three functions independently acting on a set of microparticles. The first one...
The presented theoretical treatment of interface-controlled Ostwald ripening of supported metal nano...
Temperature influences Ostwald ripening through its effect on interfacial energy, growth rate coeffi...
During Ostwald ripening, the growth of larger patches occurs at the expense of smaller ones via deta...
AbstractWe consider a dilute mixture of a finite number of particles and we are interested in the co...
Ostwald ripening occurs near equilibrium conditions when larger clusters grow at the expense of diss...
Due to high surface area, supported metal nanoparticles are thermodynamically prone to sintering. Th...