A scale-up of analytical capillary zone electrophoresis (CZE) to preparative free-flow electrophoresis (FFE) is described. FFE allows fractionations based on charge densities in larger amounts than in CZE, enabling further off-line analysis of the fractions. Model compounds (carboxylic acids and polystyrene sulfonates) showed a similar behavior in FFE as in CZE. Diffusion and electrodynamic distortion effects are more pronounced in FFE than in CZE. A soil fulvic acid was analyzed by CZE and fractionated by FFE. A comparison of the FFE fractions with CZE measurements of the same sample using the effective mobility scale showed good agreement of the two methods
By transforming the time-based x-axis of electropherograms in capillary zone electrophoresis (CZE) i...
This article discusses the main approaches to the manipulation of the separation selectivity of inor...
Migration times or apparent mobilities can never be used for the identification of ionic species in ...
The characterization of statistical copolymers of various charge densities remains an important and ...
A mathematical model was set up for the calculation of all parameters in sample zones in capillary z...
A theoretical model intended for characterizations of capillary zone electrophoresis (CZE) separatio...
Capillary electrophoresis (CE) is the workhorse of countless analytical laboratories and is used rou...
Capillary zone electrophoresis is a separation method used to separate charged substances in electri...
The development of macromolecular engineering and the need for renewable and sustainable polymer sou...
The development of macromolecular engineering and the need for renewable and sustainable polymer sou...
International audienceThe complexity of synthetic and natural polymers used in industrial and medica...
After a decade of research, development, and instrument commercialization, capillary electrophoresis...
Capillary electromigration methods, isotachophoresis (CITP) and zone electrophoresis (CZE) were appl...
Quantitative analysis in capillary electrophoresis based on time-scale electropherograms generally u...
Electromigration dispersion (EMD) properties of background electrolytes (BGEs) used in capillary zon...
By transforming the time-based x-axis of electropherograms in capillary zone electrophoresis (CZE) i...
This article discusses the main approaches to the manipulation of the separation selectivity of inor...
Migration times or apparent mobilities can never be used for the identification of ionic species in ...
The characterization of statistical copolymers of various charge densities remains an important and ...
A mathematical model was set up for the calculation of all parameters in sample zones in capillary z...
A theoretical model intended for characterizations of capillary zone electrophoresis (CZE) separatio...
Capillary electrophoresis (CE) is the workhorse of countless analytical laboratories and is used rou...
Capillary zone electrophoresis is a separation method used to separate charged substances in electri...
The development of macromolecular engineering and the need for renewable and sustainable polymer sou...
The development of macromolecular engineering and the need for renewable and sustainable polymer sou...
International audienceThe complexity of synthetic and natural polymers used in industrial and medica...
After a decade of research, development, and instrument commercialization, capillary electrophoresis...
Capillary electromigration methods, isotachophoresis (CITP) and zone electrophoresis (CZE) were appl...
Quantitative analysis in capillary electrophoresis based on time-scale electropherograms generally u...
Electromigration dispersion (EMD) properties of background electrolytes (BGEs) used in capillary zon...
By transforming the time-based x-axis of electropherograms in capillary zone electrophoresis (CZE) i...
This article discusses the main approaches to the manipulation of the separation selectivity of inor...
Migration times or apparent mobilities can never be used for the identification of ionic species in ...