A realistic computer model for polymorphic crystallization (i.e., initial and final phases with identical compositions), which includes time-dependent nucleation and cluster-size-dependent growth rates, is developed and tested by fits to experimental data. Model calculations are used to assess the validity of two of the more common approaches for the analysis of crystallization data. The effects of particle size on transformation kinetics, important for the crystallization of many systems of limited dimension including thin films, fine powders, and nanoparticles, are examined
A crystallization model appropriate for application in continuum modeling of complex processes is pr...
The population balance model is a valuable modelling tool which facilitates the optimization and und...
Polymorphism is an important issue in industrial crystallization, since polymorphs of the same compo...
A realistic computer model for simulating isothermal and non-isothermal phase transformations procee...
Crystallization is an important process, widely used in many industries including specialty chemical...
Crystallization is an important process, widely used in many industries including specialty chemical...
We present the crystallization kinetics for two polydisperse hard-sphere particle stocks with differ...
We propose a simple, versatile, and fast computational model to understand the deviations from the w...
We propose a simple, versatile, and fast computational model to understand the deviations from the w...
We propose a simple, versatile, and fast computational model to understand the deviations from the w...
Two different simulation approaches have been used to describe nanocrystallization processes: a limi...
We propose a simple and versatile model to understand the deviations from the well-known Kolmogorov-...
In this paper we present measurements of the crystallization kinetics of binary mixtures of two diff...
A crystallization model appropriate for application in continuum modeling of complex processes is pr...
A crystallization model appropriate for application in continuum modeling of complex processes is pr...
A crystallization model appropriate for application in continuum modeling of complex processes is pr...
The population balance model is a valuable modelling tool which facilitates the optimization and und...
Polymorphism is an important issue in industrial crystallization, since polymorphs of the same compo...
A realistic computer model for simulating isothermal and non-isothermal phase transformations procee...
Crystallization is an important process, widely used in many industries including specialty chemical...
Crystallization is an important process, widely used in many industries including specialty chemical...
We present the crystallization kinetics for two polydisperse hard-sphere particle stocks with differ...
We propose a simple, versatile, and fast computational model to understand the deviations from the w...
We propose a simple, versatile, and fast computational model to understand the deviations from the w...
We propose a simple, versatile, and fast computational model to understand the deviations from the w...
Two different simulation approaches have been used to describe nanocrystallization processes: a limi...
We propose a simple and versatile model to understand the deviations from the well-known Kolmogorov-...
In this paper we present measurements of the crystallization kinetics of binary mixtures of two diff...
A crystallization model appropriate for application in continuum modeling of complex processes is pr...
A crystallization model appropriate for application in continuum modeling of complex processes is pr...
A crystallization model appropriate for application in continuum modeling of complex processes is pr...
The population balance model is a valuable modelling tool which facilitates the optimization and und...
Polymorphism is an important issue in industrial crystallization, since polymorphs of the same compo...