A general stochastic theory of size exclusion chromatography (SEC) able to account for size dependence on both pore ingress and egress processes, moving zone dispersion and pore size distribution, was developed. The relationship between stochastic-chromatographic and batch equilibrium conditions are discussed and the fundamental role of the `ergodic´ hypothesis in establishing a link between them is emphasized. SEC models are solved by means of the characteristic function method and chromatographic parameters like plate height, peak skewness and excess are derived. The peak shapes are obtained by numerical inversion of the characteristic function under the most general conditions of the exploited models. Separate size effects on pore ingres...
The stochastic model of chromatography describes the separation process at the molecular level in pr...
In this work, the influence of the width of particle size distribution (PSD) on chromatographic effi...
Alternative approaches for the determination of band broadening in size-exclusion chromatography bas...
The stochastic theory of size exclusion chromatography (SEC) was applied to analyze the peak shape ...
The experimental validation of the recently developed stochastic model of size-exclusion chromatogra...
The stochastic theory of chromatography is reconsidered through the fundamental characteristic funct...
Dispersion properties of biomolecules in size-exclusion chromatographic columns are analyzed both ex...
The stochastic model of chromatography has been combined with mobile-phase dispersion. With the comb...
The Stochastic Theory of Chromatography has been revised in light of some of the most relevant Lévy'...
A simple analytical equation for the distribution coefficient K in size-exclusion chromatography (SE...
A simple analytical equation for the distribution coefficient K in size-exclusion chromatography (SE...
The most preferred method to separate sample molecules based on their size relative to the pore siz...
Size exclusion chromatography (SEC) is a widely used tool in bioseparations. Because its separation ...
Size exclusion chromatography (SEC) is a widely used tool in bioseparations. Because its separation ...
Study of Band Broadening occurring in Size Exclusion Chromatography (SEC) is reported using very nar...
The stochastic model of chromatography describes the separation process at the molecular level in pr...
In this work, the influence of the width of particle size distribution (PSD) on chromatographic effi...
Alternative approaches for the determination of band broadening in size-exclusion chromatography bas...
The stochastic theory of size exclusion chromatography (SEC) was applied to analyze the peak shape ...
The experimental validation of the recently developed stochastic model of size-exclusion chromatogra...
The stochastic theory of chromatography is reconsidered through the fundamental characteristic funct...
Dispersion properties of biomolecules in size-exclusion chromatographic columns are analyzed both ex...
The stochastic model of chromatography has been combined with mobile-phase dispersion. With the comb...
The Stochastic Theory of Chromatography has been revised in light of some of the most relevant Lévy'...
A simple analytical equation for the distribution coefficient K in size-exclusion chromatography (SE...
A simple analytical equation for the distribution coefficient K in size-exclusion chromatography (SE...
The most preferred method to separate sample molecules based on their size relative to the pore siz...
Size exclusion chromatography (SEC) is a widely used tool in bioseparations. Because its separation ...
Size exclusion chromatography (SEC) is a widely used tool in bioseparations. Because its separation ...
Study of Band Broadening occurring in Size Exclusion Chromatography (SEC) is reported using very nar...
The stochastic model of chromatography describes the separation process at the molecular level in pr...
In this work, the influence of the width of particle size distribution (PSD) on chromatographic effi...
Alternative approaches for the determination of band broadening in size-exclusion chromatography bas...