Multiphase Oscillatory Flow Strategy for in Situ Measurement and Screening of Partition Coefficients

Taking advantage of the difference between the surface energies of aqueous and organic solvents on a Teflon substrate, a fully automated small-scale strategy is developed on the basis of gas-driven oscillatory motion of a biphasic slug for high-throughput in situ measurement and screening of partiti...

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Veröffentlicht in:Analytical chemistry (Washington) 2015-11, Vol.87 (21), p.11130-11136
Hauptverfasser: Abolhasani, Milad, Coley, Connor W, Jensen, Klavs F
Format: Artikel
Sprache:eng
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Zusammenfassung:Taking advantage of the difference between the surface energies of aqueous and organic solvents on a Teflon substrate, a fully automated small-scale strategy is developed on the basis of gas-driven oscillatory motion of a biphasic slug for high-throughput in situ measurement and screening of partition coefficients of organic substances between aqueous and organic phases. The developed oscillatory flow strategy enables single partition coefficient data point measurement within 8 min (including the sample preparation time) which is 360 times faster than the conventional “shake-flask” method, while using less than a 30 μL volume of the two phases and 9 nmol of the target organic substance. The developed multiphase strategy is validated using a conventional shake-flask technique. Finally, the developed strategy is extended to include automated screening of partition coefficients at physiological temperature.
ISSN:0003-2700
1520-6882
DOI:10.1021/acs.analchem.5b03311