Separation of Polyethylene Glycol Oligomers on Normal-Phase and Reversed-Phase Materials by Gradient High Performance Liquid Chromatography and Detection by Evaporative Light Scattering. A Comparative Study
- 1 August 1994
- journal article
- research article
- Published by Taylor & Francis in Journal of Liquid Chromatography
- Vol. 17 (14-15) , 3109-3132
- https://doi.org/10.1080/10826079408013194
Abstract
Separation of the polyethylene glycols PEG-200, PEG-300, PEG-600 and PEG-1000 by gradient high performance liquid chromatography is reported on a C18 as well as a Si 80 column in aqueous mixtures of acetonitrile, acetone and methanol as organic solvents. Detection was performed by means of evaporative light scattering. Further, the Mn and Mw values were determined by gel permeation chromatography and refractive index detection. Marked differences in the chromatographic behaviour occured between the two stationary phases with all three modifiers. Whereas PEG-200 and PEG-300 exhibited better peak resolution Rs on the C18 matrix, the inverse effect was observed with PEG-600 and PEG-1000, which reveal much better Rs on bare silica gel. Further, a dependence of the Rs of the PEG-600 and PEG-1000 samples (consisting of a substantially higher number of oligomers versus PEG-200 and PEG-300) from the organic modifier was seen, which increases in the range methanol s of oligomers is discussed by the assumption of different hydrogen bonding mediated solventstationary phase interactions implying a preponderance of adsorption (acetonitrile, acetone) versus partition chromatography (methanol).Keywords
This publication has 21 references indexed in Scilit:
- Analysis of Polyethers by Isocratic HPLC with Universal Detectors. II. Quantitative Analysis and Determination of Molecular Weight AveragesJournal of Liquid Chromatography, 1993
- Analysis of Polyethers by Isocratic HPLC with Universal Detectors. I. Optimization of Chromatographic ConditionsJournal of Liquid Chromatography, 1993
- Rapid separation of non-ionic surfactants of polyethoxylated octylphenol and determination of ethylene oxide oligomer distribution by C1 column reversed-phase liquid chromatographyJournal of Chromatography A, 1993
- Chromatographic investigations of oligomeric α,ω-dihydroxy polyethers by reversed-phase high-performance liquid chromatography and evaporative light scattering and UV detectionJournal of Chromatography A, 1993
- Automated analyses of non-ionic surfactants in terms of hydrophobic and polyoxyethylated chain lengthsJournal of Chromatography A, 1992
- Analytical study of non-ionic surfactants used in enhanced oil recovery : Optimization of analytical conditions in reversed-phase partition chromatographyJournal of Chromatography A, 1989
- Liquid chromatographic fractionation of oligomers of nonylphenyl-oligo(ethylene glycol)Journal of Chromatography A, 1985
- Flüssigchromatographische Charakterisierung von Fettalkohol‐Ethylenoxid‐AdduktenActa Polymerica, 1983
- High-performance liquid chromatographic method for determining ethoxymer distribution of alkylphenoxy polyoxyethylene surfactantsJournal of Chromatography A, 1982
- Oligomer separations by gradient elution high-performance liquid chromatographyJournal of Chromatography A, 1978