Journal of chromatography. A 2015-03-13

Prediction of the chromatographic retention of acid-base compounds in pH buffered methanol-water mobile phases in gradient mode by a simplified model.

Axel Andrés, Martí Rosés, Elisabeth Bosch

Index: J. Chromatogr. A. 1385 , 42-8, (2015)

Full Text: HTML

Abstract

Retention of ionizable analytes under gradient elution depends on the pH of the mobile phase, the pKa of the analyte and their evolution along the programmed gradient. In previous work, a model depending on two fitting parameters was recommended because of its very favorable relationship between accuracy and required experimental work. It was developed using acetonitrile as the organic modifier and involves pKa modeling by means of equations that take into account the acidic functional group of the compound (carboxylic acid, protonated amine, etc.). In this work, the two-parameter predicting model is tested and validated using methanol as the organic modifier of the mobile phase and several compounds of higher pharmaceutical relevance and structural complexity as testing analytes. The results have been quite good overall, showing that the predicting model is applicable to a wide variety of acid-base compounds using mobile phases prepared with acetonitrile or methanol. Copyright © 2015 Elsevier B.V. All rights reserved.

Related Compounds

Structure Name/CAS No. Articles
Sodium acetate Structure Sodium acetate
CAS:127-09-3
Hydrochloric acid Structure Hydrochloric acid
CAS:7647-01-0
Sodium hydroxide Structure Sodium hydroxide
CAS:1310-73-2
Potassium bromide Structure Potassium bromide
CAS:7758-02-3
Phosphoric acid Structure Phosphoric acid
CAS:7664-38-2
Methanol Structure Methanol
CAS:67-56-1
3-Ethyl-2,4-pentanedione Structure 3-Ethyl-2,4-pentanedione
CAS:1540-34-7
Di-potassium monohydrogen phosphate Structure Di-potassium monohydrogen phosphate
CAS:7758-11-4
Ammonium Chloride Structure Ammonium Chloride
CAS:12125-02-9
Pyrrolidine Structure Pyrrolidine
CAS:123-75-1