On-Line Sample Preconcentration Using Field-amplified Stacking Injection in Microchip Capillary Electrophoresis
- 3 May 2006
- journal article
- research article
- Published by American Chemical Society (ACS) in Analytical Chemistry
- Vol. 78 (11), 3730-3737
- https://doi.org/10.1021/ac0521798
Abstract
Previous reports describing sample stacking on microchip capillary electrophoresis (μCE) have regarded the microchip channels as a closed system and treated the bulk flow as in traditional capillary electrophoresis. This work demonstrates that the flows arising from the intersection should be investigated as an open system. It is shown that the pressure-driven flows into or from the branch channels due to bulk velocity mismatch in the main channel should not be neglected but can be used for liquid transportation in the channels. On the basis of these concepts, a sample preconcentration scheme was developed in a commercially available single-cross glass chip for μCE. Similar to field-amplified stacking injection in traditional CE, a low conductivity sample buffer plug was introduced into the separation channel immediately before the negatively charged analyte molecules were injected. The detection sensitivity was improved by 94-, 108-, and 160-fold for fluorescein-5-isothiocyanate, fluorescein disodium, and 5-carboxyfluorescein, respectively, relative to a traditional pinched injection. The calibration curves for fluorescein and 5-carboxyfluorescein demonstrated good linearity in the concentration range (1−60 nM) investigated with acceptable reproducibility of migration time and peak height and area ratios (4−5% RSD). This preconcentration scheme will be of particular significance to the practical use of μCE in the emerging miniaturized analytical instrumentation.Keywords
This publication has 39 references indexed in Scilit:
- Large-volume sample stacking-capillary electrophoresis used for the determination of 3-nitrotyrosine in rat urineJournal of Chromatography B, 2004
- Enhancing the sensitivity of capillary electrophoresis using a microcolumn solid phase extraction setupJournal of Separation Science, 2003
- Thousandfold signal increase using field‐amplified sample stacking for on‐chip electrophoresisElectrophoresis, 2003
- In‐column field‐amplified sample stacking of biogenic amines on microfabricated electrophoresis devicesElectrophoresis, 2003
- Electroosmotically Induced Hydraulic Pumping on Microchips: Differential Ion TransportAnalytical Chemistry, 2000
- Generating Electrospray from Microchip Devices Using Electroosmotic PumpingAnalytical Chemistry, 1997
- Fast, Accurate Mobility Determination Method for Capillary ElectrophoresisAnalytical Chemistry, 1996
- Mechanism of Peptide Separations by Solid Phase Extraction Capillary Electrophoresis at Low pHAnalytical Chemistry, 1996
- Microchip electrophoresis with sample stackingElectrophoresis, 1995
- Determination of chlorite and chlorate in chlorinated and chloraminated drinking water by flow injection analysis and ion chromatographyAnalytical Chemistry, 1992