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Separation of phenolic acids by capillary electrophoresis with indirect contactless conductometric detection
Kubán P, Sterbová D, Kubán V.
Jazyk angličtina Země Německo
NLK
Wiley Online Library (archiv)
od 1999-01-01 do 2012-12-31
- MeSH
- benzoáty analýza chemie MeSH
- cinnamáty analýza chemie MeSH
- cirkulární dichroismus MeSH
- elektroforéza kapilární metody MeSH
- elektrolyty MeSH
- financování organizované MeSH
- hydroxybenzoáty analýza chemie MeSH
- konduktometrie MeSH
- spektrofotometrie ultrafialová MeSH
A new method for the electrophoretic separation of nine phenolic acids (derivatives of benzoic and cinnamic acids) with contactless conductometric detection is presented. Based on theoretical calculations, in which the mobility of the electrolyte co- and counterions and mobility of analytes are taken into consideration, the electrolyte composition and detection mode was selected. This approach was found to be especially valuable for optimization of the electrolyte composition for the separation of analytes having medium mobility. Indirect conductometric detection mode was superior to the direct mode as predicted theoretically. The best performance was achieved with 150 mM 2-amino-2-methylpropanol electrolyte at pH 11.6. The separation was carried out in a counter-electroosmotic mode and completed in less than 6 min. The LODs achieved were about 2.3-3.3 microM and could be further improved to 0.12-0.17 microM by using a sample stacking procedure. The method compares well to the UV-Vis detection.
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- $a Separation of phenolic acids by capillary electrophoresis with indirect contactless conductometric detection / $c Kubán P, Sterbová D, Kubán V.
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- $a Department of Chemistry and Biochemistry, Mendel University of Agriculture and Forestry, Brno, Czech Republic. kuban0@mendelu.cz
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- $a A new method for the electrophoretic separation of nine phenolic acids (derivatives of benzoic and cinnamic acids) with contactless conductometric detection is presented. Based on theoretical calculations, in which the mobility of the electrolyte co- and counterions and mobility of analytes are taken into consideration, the electrolyte composition and detection mode was selected. This approach was found to be especially valuable for optimization of the electrolyte composition for the separation of analytes having medium mobility. Indirect conductometric detection mode was superior to the direct mode as predicted theoretically. The best performance was achieved with 150 mM 2-amino-2-methylpropanol electrolyte at pH 11.6. The separation was carried out in a counter-electroosmotic mode and completed in less than 6 min. The LODs achieved were about 2.3-3.3 microM and could be further improved to 0.12-0.17 microM by using a sample stacking procedure. The method compares well to the UV-Vis detection.
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