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Publications

Mgr. Pavel Dubský, Ph.D.

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J. Chromatogr. A, 1568 (2018) 214–221
Using single-isomer octakis(2,3-dihydroxy-6-O-sufo)-γ-cyclodextrin for fast capillary zone electrophoresis enantioseparation of pindolol; determination of complexation constants, software-assisted method optimization, and validation.

Electrophoresis, 39 (2018) 1390-1398
Enhancement of the conductivity detection signal in capillary electrophoresis systems using neutral cyclodextrins as sweeping agents.

Electrophoresis, 39 (2018) 742-751
Into the theory of the partial filling technique and the determination of stability constants of analyte-ligand complexes.

Anal. Chem., 89 (2017) 2886-2892
Integrating Internal Standards into Disposable Capillary Electrophoresis Devices To Improve Quantification.

Anal. Bioanal. Chem. 408 (2016) 8623-8641
Affinity capillary electrophoresis: the theory of electromigration.

J. Chromatogr. A, 1445 (2016) 158–165
CEval: All-in-one software for data processing and statistical evaluations in affinity capillary electrophoresis.

J. Chromatogr. A, 1384 (2015) 147-154
Generalized model of electromigration with 1:1 (analyte : selector) complexation stoichiometry: Part II. Application to dual systems and experimental verification.

J. Chromatogr. A, 1424 (2015) 139-143
Determination of relative enantiomer migration order using a racemic sample.

Electrophoresis, 2015, 36, 712-721
A versatile electrophoresis-based self-test platform.

Electrophoresis,  36 (2015) 646-654
Equivalent peak resolution: characterization of the extent of separation for two components based on their relative peak overlap.

Electrophoresis, 36 (2015) 655-661
Determination of the correct migration time and other parameters of the Haarhoff-van der Linde function from the peak geometry characteristics.

J. Chromatogr. A, 1384 (2015) 147-154
Generalized model of electromigration with 1:1 (analyte : selector) complexation stoichiometry: Part II. Application to dual systems and experimental verification.

J. Chromatogr. A, 1384 (2015) 142-146
Generalized model of electromigration with 1:1 (analyte : selector) complexation stoichiometry: Part I. Theory.

Electrophoresis, 35 (2014) 2688–2700
Twenty years of development of dual and multi selector models in capillary electrophoresis: A review.

J. Chromatogr. A, 1330 (2014) 82-88
Separation efficiency of dual-selector systems in capillary electrophoresis.

Anal. Chem., 85 (2013) 8526-8534
Complexation of buffer constituents with neutral complexation agents: Part II. Practical impact in capillary zone electrophoresis.

Electrophoresis, 34 (2013) 768-776
Determination of effective mobilities of EOF markers in BGE containing sulfated β-cyclodextrin by a new two-detector method.

Electrophoresis, 33 (2012) 3012-3020
Simulation of the effects of complex formation equilibria in electrophoresis: III. Simultaneous effects of chiral selector concentration and background electrolyte pH.

PHYSICAL REVIEW LETTERS, 108 (2012) article 138101 (5 pages)
Concentration polarization in translocation of DNA through nanopores and nanochannels.

J.Chromatogr. A, 1218 (2011) 7211-7218
Methods for determination of all binding parameters in systems with simultaneous borate and cyclodextrin complexation.

Electrophoresis, 32 (2011) 595-603
Accuracy and sensitivity of the determination of rate constants of interconversion in achiral and chiral environments by dynamic enantioselective electrophoresis.

Electrophoresis, 31 (2010) 1435-1441
Enhanced selectivity in CZE multi-chiral selector enantioseparation systems: Proposed separation mechanism.

J.Chromatogr. B, 875 (2008) 30-34
Model of CE enantioseparation systems with a mixture of chiral selectors Part I. Theory of migration and interconversion.

Chromatogr. B. 875 (2008) 35-41
Model of CE enantioseparation systems with a mixture of chiral selectors Part II. Determination of thermodynamic parameters of the interconversion in chiral and achiral environments separately. J.

Electrophoresis, 25 (2004) 733-742
Dynamics of interconversion of enantiomers in chiral separation systems: A novel approach for determination of all rate constants involved in the interconversion.

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