Abstract
Several important figures of merit(migration time, efficiency, resolution per unit time, and electrophoretic selectivity) are quantitatively compared for the first time for conventional CZE and dual-opposite-injection CZE (DOI-CZE). Aspects of DOI-CZE relevant to the separation of organic and pharmaceutical ions (MW>120 Da) are also discussed. Two new approaches to resolve the codetection of anions and cations, hydro-dynamic flow-modified DOI-CZE and polarity reversal in combination with asymmetric detector window positioning, are compared with the method of preliminary transport, a variable procedure within sequential sample introduction, using a six-component sample of organic and pharmaceutical compounds. The advantages of DOI-CZE for the simultaneous analysis of organic/pharmaceutical anions and cations are illustrated in a direct comparison of conventional CZE and DOI-CZE for the separation of a ten-component mixture of pharmaceutical ions (five ionized acids and five ionized bases). © 2007 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim.
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Weekley, B. S., & Foley, J. P. (2007). Dual-opposite-injection CZE: Theoretical aspects and application to organic and pharmaceutical compounds. Electrophoresis, 28(4), 697–711. https://doi.org/10.1002/elps.200600608
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