Literature DB >> 18633945

Influence of polymer structure on electroosmotic flow and separation efficiency in successive multiple ionic layer coatings for microchip electrophoresis.

Kanokporn Boonsong1, Meghan M Caulum, Brian M Dressen, Orawon Chailapakul, Donald M Cropek, Charles S Henry.   

Abstract

The effect of successive multiple ionic layer (SMIL) coatings on the velocity and direction of EOF and the separation efficiency for PDMS electrophoresis microchips was studied using different polymer structures and deposition conditions. To date, the majority of SMIL studies have used traditional CE and fused-silica capillaries. EOF was measured as a function of polymer structure and number of layers, in one case using the same anionic polymer and varying the cationic polymer and in the second case using the same cationic polymer and varying the anionic polymer. In both situations, the EOF direction reversed with each additional deposited polymer layer. The absolute EOF magnitude, however, did not vary significantly with layer number or polymer structure. Next, different coatings were used to compare separation efficiencies on native and SMIL-coated PDMS microchips. For native PDMS microchips, the average separation efficiency was 4105 +/- 1540 theoretical plates. The addition of two layers of polymer increased the separation efficiency anywhere from two- to five-fold, depending on the polymer structure. A maximum separation efficiency of 12 880 +/- 1050 theoretical plates was achieved for SMIL coatings of polybrene (cationic) and dextran sulfate (anionic) polymers after deposition of six total layers. It was also noted that coating improved run-to-run consistency of the peaks as noted by a reduction of the RSD of the EOF and separation efficiency. This study shows that the use of polyelectrolyte coatings, irrespective of the polymer structure, generates a consistent EOF in the current experiments and dramatically improves the separation efficiency when compared to unmodified PDMS microchips.

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Year:  2008        PMID: 18633945     DOI: 10.1002/elps.200800186

Source DB:  PubMed          Journal:  Electrophoresis        ISSN: 0173-0835            Impact factor:   3.535


  3 in total

1.  Electrophoretic separation of neurotransmitters on a polystyrene nano-sphere∕polystyrene sulphonate coated poly(dimethylsiloxane) microchannel.

Authors:  Jinjin Zhao; Qianli Zhang; Huijuan Yang; Yifeng Tu
Journal:  Biomicrofluidics       Date:  2011-07-25       Impact factor: 2.800

2.  A general microchip surface modification approach using a spin-coated polymer resist film doped with hydroxypropyl cellulose.

Authors:  Xiuhua Sun; Weichun Yang; Yanli Geng; Adam T Woolley
Journal:  Lab Chip       Date:  2008-12-19       Impact factor: 6.799

3.  Capillary electrophoresis-mass spectrometry using noncovalently coated capillaries for the analysis of biopharmaceuticals.

Authors:  R Haselberg; V Brinks; A Hawe; G J de Jong; G W Somsen
Journal:  Anal Bioanal Chem       Date:  2011-02-14       Impact factor: 4.142

  3 in total

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