Molecular Interactions on Polystyrene Stationary Phases
- 1 May 1987
- journal article
- research article
- Published by Taylor & Francis in Journal of Liquid Chromatography
- Vol. 10 (7) , 1369-1382
- https://doi.org/10.1080/01483918708066774
Abstract
The strength of the interactions between individual molecules and solvent-swollen polystyrene gels can be correlated using Lewis acid-Lewis base arguments. Polystyrene may be viewed as a Lewis base because it may serve as an electron-pair donor to a suitable electron-pair acceptor. Mobile phases such as toluene and tetrahydrofuran (THF) are also Lewis bases. The stationary phase gel and mobile phases such as toluene and THF will compete for a Lewis acid solute, with the stronger base always interacting preferentially. For a THF mobile phase, acidic solute-mobile phase interactions predominate and size exclusion chromatography (SEC) will be the only separation mechanism occurring. Polystyrene appears to be a stronger base than toluene, and acidic solutes always interact with the gel. Retention in this system includes contributions from both SEC and gel-solute interactions. Chloroform is a Lewis acid and will interact strongly with polystyrene. Acidic solute-gel interaction must then be stronger than the chloroform-gel interaction for non-SEC retention to occur. The relative strength of the Hydrogen-bonding interactions can be predicted using Drago's E and C constants. Dipole-dipole interactions can be estimated using simple solubility parameter theory. This approach unifies experimental data reported earlier and allows a qualitative prediction of the performance of other SEC mobile phases.Keywords
This publication has 17 references indexed in Scilit:
- Quantitative evaluation and prediction of donor-acceptor interactionsPublished by Springer Nature ,2006
- Thermodynamics of retention for small molecules in the polystyrene/toluene and polystyrene/tetrahydrofuran systemsAnalytical Chemistry, 1985
- Thermodynamics of retention for small molecules in the polystyrene/chloroform systemAnalytical Chemistry, 1984
- Theory of gel permeation chromatography. Mechanism of separation and the influence of polymer-sorbent interactionPure and Applied Chemistry, 1979
- Expanded solubility parameter treatment for classification and use of chromatographic solvents and adsorbentsAnalytical Chemistry, 1978
- Elution behavior of some solutes on a porous polystyrene gel in high performance liquid chromatographyAnalytical Chemistry, 1978
- Thermodynamic interpretation of polystyrene retention on crosslinked polystyrene gels in GPC with poor and theta solventsJournal of Polymer Science: Polymer Physics Edition, 1976
- Thermodynamics of molecular association by gas-liquid chromatography. VII. Hydrogen bonding of aliphatic alcohols to di-n-octyl ether, di-n-octyl thioether, and di-n-octylmethylamineJournal of the American Chemical Society, 1974
- Four-parameter equation for predicting enthalpies of adduct formationJournal of the American Chemical Society, 1971
- A Double-Scale Equation for Correlating Enthalpies of Lewis Acid-Base InteractionsJournal of the American Chemical Society, 1965