4.5 Article

Nanostructured pillars based on vertically aligned carbon nanotubes as the stationary phase in micro-CEC

期刊

ELECTROPHORESIS
卷 30, 期 12, 页码 2025-2031

出版社

WILEY
DOI: 10.1002/elps.200900113

关键词

Carbon nanotubes; Micro-CEC; Nanostructured pillars

资金

  1. National Nanoscience and Nanotechnology Program
  2. National Science Council, Taiwan [NSC-97-2120-M-007-007]
  3. National Health Research Institute, Taiwan

向作者/读者索取更多资源

We present a micro-CEC chip carrying out a highly efficient separation of dsDNA fragments through vertically aligned multi-wall carbon nanotubes (MWCNTs) in a microchannel. The vertically aligned MWCNTs were grown directly in the microchannel to form straight nanopillar arrays as ordered and directional chromatographic supports. 1-Pyrenedodecanoic acid was employed for the surface modification of the MWCNTs' stationary phase to adsorb analytes by hydrophobic interactions. This device was used for separating dsDNA fragments of three different lengths (254, 360, and 572 bp), and fluorescence detection was employed to verify the electrokinetic transport in the MWCNT array. The micro-CEC separation of the three compounds was achieved in less than 300 s at a field strength of 66 V/cm due to superior laminar flow patterns and a lower flow resistance resulting from the vertically aligned MWCNTs being used as the stationary phase medium. In addition, a fivefold reduction of band broadening was obtained when the analyte was separated by the chromatographic MWCNT array channel instead of the CE channel. From all of the results, we suggest that an in situ grown and directional MWCNT array can potentially be useful for preparing more diversified forms of stationary phases for vertically efficient chip-based electrochromatography.

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