Journal of chromatography. A 2014-12-29

Axial thermal gradients in microchip gas chromatography.

Anzi Wang, Sampo Hynynen, Aaron R Hawkins, Samuel E Tolley, H Dennis Tolley, Milton L Lee

文献索引:J. Chromatogr. A. 1374 , 216-23, (2014)

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摘要

Fabrication technologies for microelectromechanical systems (MEMS) allow miniaturization of conventional benchtop gas chromatography (GC) to portable, palm-sized microfabricated GC (μGC) devices, which are suitable for on-site chemical analysis and remote sensing. The separation performance of μGC systems, however, has not been on par with conventional GC. Column efficiency, peak symmetry and resolution are often compromised by column defects and non-ideal injections. The relatively low performance of μGC devices has impeded their further commercialization and broader application. In this work, the separation performance of μGC columns was improved by incorporating thermal gradient gas chromatography (TGGC). The analysis time was ∼20% shorter for TGGC separations compared to conventional temperature-programmed GC (TPGC) when a wide sample band was introduced into the column. Up to 50% reduction in peak tailing was observed for polar analytes, which improved their resolution. The signal-to-noise ratios (S/N) of late-eluting peaks were increased by 3-4 fold. The unique focusing effect of TGGC overcomes many of the previous shortcomings inherent in μGC analyses. Copyright © 2014 Elsevier B.V. All rights reserved.


相关化合物

  • 正戊烷
  • 二硫化碳
  • 正十二烷
  • 2,4,6-三氯苯酚
  • 十五烷
  • 正十一烷
  • 正癸烷
  • 磷酸三丁酯
  • 2-辛醇
  • 过氧化二异丙苯

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