Electrophoretic mobilization in capillary isoelectric focusing by a weak acid or an acidic ampholyte as catholyte assessed by computer simulation (English)
- New search for: Thormann, Wolfgang
- New search for: Thormann, Wolfgang
In:
ELECTROPHORESIS
;
44
, 7-8
;
656-666
;
2023
- Article (Journal) / Electronic Resource
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Title:Electrophoretic mobilization in capillary isoelectric focusing by a weak acid or an acidic ampholyte as catholyte assessed by computer simulation
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Contributors:Thormann, Wolfgang ( author )
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Published in:ELECTROPHORESIS ; 44, 7-8 ; 656-666
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Publisher:
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Publication date:2023-04-01
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Size:11 pages
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ISSN:
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DOI:
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Type of media:Article (Journal)
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Type of material:Electronic Resource
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Language:English
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Keywords:
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Source:
Table of contents – Volume 44, Issue 7-8
The tables of contents are generated automatically and are based on the data records of the individual contributions available in the index of the TIB portal. The display of the Tables of Contents may therefore be incomplete.
- 627
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Editorial Board: Electrophoresis 7–8'23| 2023
- 628
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Contents: Electrophoresis 7–8'23| 2023
- 633
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EditorialDutta, Prashanta / Gaš, Bohuslav et al. | 2023
- 634
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Determination of nitroimidazole antibiotics based on dispersive solid‐phase extraction combined with capillary electrophoresisYang, Jing / Chen, Lianfang / Wang, Qingying / Mei, Xiaolin / Yang, Xiupei / Huo, Feng et al. | 2023
- 646
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Investigating peak dispersion in free‐flow counterflow gradient focusing due to electroosmotic flowCourtney, Matthew / Glawdel, Tomasz / Ren, Carolyn L. et al. | 2023
- 656
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Electrophoretic mobilization in capillary isoelectric focusing by a weak acid or an acidic ampholyte as catholyte assessed by computer simulationThormann, Wolfgang et al. | 2023
- 667
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Evolution of the theoretical description of the isoelectric focusing experiment: I. The path from Svensson's steady‐state model to the current two‐stage model of isoelectric focusingVigh, Gyula / Gas, Bohuslav et al. | 2023
- 675
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Evolution of the theoretical description of the isoelectric focusing experiment: II. An open system isoelectric focusing experiment is a transient, bidirectional isotachophoretic experimentVigh, Gyula / Gaš, Bohuslav et al. | 2023
- 689
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Evolution of the theoretical description of the isoelectric focusing experiment: III. Carrier ampholyte behavior in transient, bidirectional isotachophoresisVigh, Gyula / Gaš, Bohuslav et al. | 2023
- 701
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Taylor dispersion analysis discloses the impairment of Aβ peptide aggregation by the presence of a fluorescent tagDeleanu, Mihai / Hernandez, Jean‐François / Cottet, Hervé / Chamieh, Joseph et al. | 2023
- 711
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Combined electroosmotic and pressure‐driven transport of neutral solutes across a rough, porous‐walled microtubeSengupta, Sourav / Dasgupta, Tuhin / Roy, Debashis / Dejam, Morteza / De, Sirshendu et al. | 2023
- 725
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Rapid prototyping of polydimethylsiloxane (PDMS) microchips using electrohydrodynamic jet printing: Application to electrokinetic assaysChoubey, Anupam / Dubey, Kaushlendra / Bahga, Supreet Singh et al. | 2023
- 733
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Quantitative model for predicting the electroosmotic flow in dual‐pole nanochannelsKhosravikia, Mohammad et al. | 2023
- 744
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Concentration of lambda concatemers using a 3D printed deviceRau, Samantha / Huynh, Thi / Larsen, Alex / Kounovsky‐Shafer, Kristy L. et al. | 2023
- 752
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Diffusiophoresis of a cylindrical colloidal particle oriented parallel to an electrolyte concentration gradient fieldOhshima, Hiroyuki et al. | 2023
- 758
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Call for Papers| 2023
- NA
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Back Cover: Investigating peak dispersion in free‐flow counterflow gradient focusing due to electroosmotic flowCourtney, Matthew / Glawdel, Tomasz / Ren, Carolyn L. et al. | 2023
- NA
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Front CoverVigh, Gyula / Gaš, Bohuslav et al. | 2023