Michal Jaroš
Charles University in Prague
13 Papers
137 Citations
Michal Jaroš is an academic researcher from Charles University in Prague. The author has contributed to research in topics: Capillary electrophoresis & Conductivity. The author has an hindex of 11, co-authored 11 publications.
Chat about Author
Papers
Simul 5 – Free dynamic simulator of electrophoresis
TL;DR: The mathematical model of electromigration of electrolytes in free solution together with free software Simul, version 5, designed for simulation of electrophoresis is introduced, based on principles of mass conservation, acid–base equilibria, and electroneutrality.
172
Optimization of background electrolytes for capillary electrophoresis I. Mathematical and computational model.
TL;DR: In this paper, a mathematical and computational model is introduced for optimization of background electrolyte systems for capillary zone electrophoresis of anions, taking into account mono- or di- or trivalent ions and allowing also for modeling of highly acidic or alkaline electrolytes, where a presence of hydrogen and hydroxide ions is significant.
91
Eigenmobilities in background electrolytes for capillary zone electrophoresis: II. Eigenpeaks in univalent weak electrolytes.
TL;DR: The model allows assessing experimentally available quantities such as effective mobility of the analyte, molar conductivity detection response, transfer ratio, and relative velocity slope and gives a picture about migration of analytes, their electromigration dispersion and signals obtained in detectors.
80
Conductivity detection in capillary zone electrophoresis: inspection by PeakMaster.
TL;DR: It is shown that the terms direct and indirect conductivity detection are misleading and should not be used and the demands to achieve minimum electromigration dispersion and high sensitivity in Conductivity detection can be accomplished at the same time.
58
New configuration in capillary isotachophoresis-capillary zone electrophoresis coupling.
TL;DR: A new configuration of electrolyte systems in cITP-CZE coupling is proposed, which offers a possibility to perform complex analyses of micro- and macro-constituents in one run, and the advantages and disadvantages are discussed.
29