Sample Filtration, Concentration, and Separation Integrated on Microfluidic Devices

Microfabricated devices integrating sample filtration, solid-phase extraction, and chromatographic separation with solvent programming were demonstrated. Filtering of the sample was accomplished at the sample inlet with an array of seven channels each 1 μm deep and 18 μm wide. Sample concentration a...

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Veröffentlicht in:Analytical chemistry (Washington) 2003-06, Vol.75 (11), p.2761-2767
Hauptverfasser: Broyles, B. Scott, Jacobson, Stephen C, Ramsey, J. Michael
Format: Artikel
Sprache:eng
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Zusammenfassung:Microfabricated devices integrating sample filtration, solid-phase extraction, and chromatographic separation with solvent programming were demonstrated. Filtering of the sample was accomplished at the sample inlet with an array of seven channels each 1 μm deep and 18 μm wide. Sample concentration and separation were performed on channels 5 μm deep and 25 μm wide coated with a C18 phase, and elution was achieved under isocratic, step, or linear gradient conditions. For the solid-phase extraction, signal enhancement factors of 400 over a standard injection of 1.0 s were observed for a 320-s injection. Four polycyclic aromatic compounds were resolved by open channel electrochromatography in under 50 s. Chip operation was unaffected by the presence of the 5-μm silica particles at the filter entrance.
ISSN:0003-2700
1520-6882
DOI:10.1021/ac025503x