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Samenvatting
The current study comprises a systematic investigation to assess retention properties and selectivity of a mixed-mode reversed-phase/weak-anion-exchange (RP/WAX) stationary phase to aid method development. Retention was investigated for different compound classes which vary in hydrophobicity, van der Waals surface area, and charge as function of organic content, pH, and ionic strength of the mobile phase. The linear-solvent-strength model was successfully applied for aromatic hydrocarbons to obtain retention-time predictions based on log P values and van der Waals surface area values. For phenols, predictions were based on log P values and data from a single scouting run performed in isocratic mode to estimate the S parameter; the deviations between experimental and predicted retention times were smaller than 6%. To describe the mixed-mode (RP/WAX) retention behavior of singly and doubly negatively-charged aromatic acids, a novel model combining the linear-solvent-strength and the empirical stoichiometric-displacement-net-charge models is proposed and validated. Using combinations of three scouting runs that are not linearly dependent, the maximum prediction error was 11% and changes in selectivity were correctly forecasted when altering the mobile-phase composition, i.e., either organic modifier content or ionic strength. When using nine scouting runs in combination with a least-squares regression approach to determine the model parameters, the maximum prediction error was 6%.
Originele taal-2 | English |
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Pagina's (van-tot) | 75-81 |
Aantal pagina's | 7 |
Tijdschrift | Journal of Chromatography. A |
Volume | 1570 |
DOI's | |
Status | Published - 5 okt 2018 |
Vingerafdruk
Duik in de onderzoeksthema's van 'Probing selectivity of mixed-mode reversed-phase/weak-anion-exchange liquid chromatography to advance method development'. Samen vormen ze een unieke vingerafdruk.Projecten
- 1 Afgelopen
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SRP6: SRP (Zwaartepunt): exploitatie van de voordelen van de Orde in Opsluiting voor een groenere chemie
Desmet, G., Denayer, J., Denayer, J., Desmet, G. & Denayer, J.
1/11/12 → 31/10/22
Project: Fundamenteel
Onderzoekersoutput
- 15 Citaties
- 1 Poster
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Probing Selectivity of Mixed-Mode Reversed-Phase / Weak-Anion-Exchange Liquid Chromatography Columns to Advance Method Development
Dores-Sousa, J. L. & Eeltink, S., 13 mei 2018.Onderzoeksoutput: Poster