Retention-time prediction for polycyclic aromatic compounds in reversed-phase capillary electro-chromatography

被引:0
作者
Peter Feenstra
Heidrun Gruber-Wölfler
Michael Brunsteiner
Johannes Khinast
机构
[1] Graz University of Technology,Institute of Process and Particle Engineering, NAWI Graz
[2] TU Graz,undefined
[3] Research Center Pharmaceutical Engineering,undefined
来源
Journal of Molecular Modeling | 2015年 / 21卷
关键词
Electro-chromatography; Log P; Molecular dynamics; Partition coefficient; Simulation;
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摘要
Log Po/w based models are often used for the retention time prediction of reversed phase liquid chromatography. Here, we present the investigation of the applicability of log Po/w based retention time predictions for the separation in capillary electro-chromatography (CEC). A test set of five polycyclic aromatic hydrocarbons was separated using two different stationary phases with three different mobile phases each. The resulting retention times were correlated with the experimental log Po/w values as well as with calculated log Po/w values. The used methods include quantitative structure property relationship (QSPR) models as well as molecular dynamic methods such as the linear interaction energy (LIE) or the Bennett acceptance ratio (BAR). The results indicate that rigorous simulation models are capable of accurately reproducing experimental results and that the electrophoretic mobility of analytes in CEC separations leads to significant deviations in the retention time prediction.
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[1]  
Eugene Kellogg G(2000)Hydrophobicity: is LogP(o/w) more than the sum of its parts? Eur J Med Chem 35 651-661
[2]  
Abraham DJ(1976)Direct maesurement of octanol-water partition coefficients by high-pressure liquid chromatography J Med Chem 19 615-619
[3]  
Mirrlees M(2012)Prediction of liquid chromatographic retention for differentiation of structural isomers Anal Chim Acta 720 142-148
[4]  
Moulton S(2006)Chain conformation and solvent partitioning in reversed-phase liquid chromatography: Monte Carlo simulations for various water/methanol concentrations J Chromatogr A 1126 219-231
[5]  
Murphy C(2007)Retention mechanism in reversed-phase liquid chromatography: a molecular perspective Anal Chem 79 6551-6558
[6]  
Taylor P(2009)Retention models for isocratic and gradient elution in reversed-phase liquid chromatography J Chromatogr A 1216 1737-1755
[7]  
Tyrkkö E(2001)Monte Carlo Calculations for alcohols and their mixtures with alkanes. Transferable potentials for phase equilibria. 5. United-atom description of primary, secondary, and tertiary alcohols J Phys Chem B 105 3093-3104
[8]  
Pelander A(1999)Novel configurational-bias Monte Carlo method for branched molecules. Transferable potentials for phase equilibria. 2. United-atom description of branched alkanes J Phys Chem B 103 4508-4517
[9]  
Ojanperä I(1983)Comparison of simple potential functions for simulating liquid water J Chem Phys 79 926-2446
[10]  
Zhang L(2009)1-Octanol/water partition coefficients of n-alkanes from molecular simulations of absolute solvation free J Chem Theory Comput 5 2436-391