| Literature DB >> 31104849 |
Phillip B Ogden1, John G Dorsey2.
Abstract
High temperature ethanol/water was explored as a green eluent in the reversed-phase liquid chromatographic approximation of pure water retention (log kw) and subsequent estimation of the octanol/water partition coefficient (log P) via the Collander equation and the Leave-One-Out method. As part of this work, linear solvation energy relationships were employed to compare the log kw extrapolated systems based on high temperature ethanol/water, ambient acetonitrile/water, and ambient methanol/water mobile phases. Based on the comparisons of the three organic modifiers, high temperature ethanol/water mobile phases were observed to provide the best estimation of log P. This conclusion is based on a high log P correlation of 0.968 R2 and a near unity cos θ value of 0.997 between LSER coefficient vectors of ethanol/water estimated log P and octanol/water log P systems. The method employed in this work, further, provided high correlation for the hydrogen-bonding basicity term between the two systems.Entities:
Keywords: Ethanol/water mobile phases; High temperature liquid chromatography; Linear solvation energy relationships; Octanol/water partition coefficient; Snyder-soczewinski equation
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Year: 2019 PMID: 31104849 DOI: 10.1016/j.chroma.2019.05.002
Source DB: PubMed Journal: J Chromatogr A ISSN: 0021-9673 Impact factor: 4.759