Journal of Chromatography A 2005-11-18

Rational method development strategies on a fluorinated liquid chromatography stationary phase: mobile phase ion concentration and temperature effects on the separation of ephedrine alkaloids.

David S Bell, Hugh M Cramer, A Daniel Jones

Index: J. Chromatogr. A. 1095(1-2) , 113-8, (2005)

Full Text: HTML

Abstract

Fluorinated, silica-based stationary phases are becoming increasingly popular alternatives to traditional alkyl phases owing to their differential selectivity and retention for a variety of analyte classes. In this report, the ion-exchange mechanisms characteristic of a fluorinated phase are exploited to rapidly develop separation conditions for ephedrine alkaloids and synephrine using a mobile phase compatible with mass spectrometry. A linear relationship of basic analyte retention with the reciprocal of ammonium acetate concentration is first established. This linear relationship can then be used to optimize retention and selectivity in just two experiments. The relationship of retention with temperature is also explored. Greater retention with increasing temperature is demonstrated on the fluorinated phase at high percentages of organic modifier, which is in contrast to behavior observed in typical reversed-phase separations. The unexpected observation is explicated based on the reduction in solvent solvating power with increasing temperature. As solvation power of the mobile phase decreases, decreased solvation of both mobile phase and ionized surface groups of the stationary phase leads to stronger interactions between analyte and stationary phase. Both mobile phase ion concentration and temperature are shown to be powerful tools for the manipulation of analyte retention and selectivity.


Related Compounds

Related Articles:

Wide-range screening of psychoactive substances by FIA-HRMS: identification strategies.

2015-06-01

[Anal. Bioanal. Chem 407 , 4567-80, (2015)]

The relevance of the urinary concentration of ephedrines in anti-doping analysis: determination of pseudoephedrine, cathine, and ephedrine after administration of over-the-counter medicaments.

2009-08-01

[Ther. Drug Monit. 31(4) , 520-6, (2009)]

Comparison of contents of five ephedrine alkaloids in three official origins of Ephedra Herb in China by high-performance liquid chromatography.

2011-07-01

[J. Nat. Med. 65(3-4) , 623-8, (2011)]

Simultaneous quantification of six ephedrines in a Mahwang preparation and in urine by high-performance liquid chromatography.

2005-06-01

[Biomed. Chromatogr. 19(5) , 337-42, (2005)]

Results of stability studies with doping agents in urine.

2007-01-01

[J. Anal. Toxicol. 31(9) , 543-8, (2007)]

More Articles...