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Impact of conduit geometry on the performance of typical particulate microchip packings

Authors :
Jung, Stephanie
Holtzel, Alexandra
Ehlert, Steffen
Mora, Jose-Angel
Kraiczek, Karsten
Dittmann, Monika
Rozing, Gerard P.
Tallarek, Ulrich
Source :
Analytical Chemistry. Dec 15, 2009, Vol. 81 Issue 24, p10193, 8 p.
Publication Year :
2009

Abstract

This work investigates the impact of conduit geometry on the chromatographic performance of typical particulate microchip packings. For this purpose, high-performance liquid chromatography (HPLC)/UV-microchips with separation channels of quadratic, trapezoidal, or Gaussian cross section were fabricated by direct laser ablation and lamination of multiple polyimide layers and then slurry-packed with either 3 or 5 [micro]m spherical porous C8--silica particles under optimized packing conditions. Experimentally determined plate height curves for the empty microchannels are compared with dispersion coefficients from theoretical calculations. Packing densities and plate height curves for the various microchip packings are presented and conclusively explained. The 3 [micro]m packings display a high packing density irrespective of their conduit geometries, and their performance reflects the dispersion behavior of the empty channels. Dispersion in 5 [micro]m packings correlates with the achieved packing densities, which are limited by the number and accessibility of corners in a given conduit shape. 10.1021/ac902069x

Details

Language :
English
ISSN :
00032700
Volume :
81
Issue :
24
Database :
Gale General OneFile
Journal :
Analytical Chemistry
Publication Type :
Academic Journal
Accession number :
edsgcl.215482040