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Behavior of macroporous vinyl silica and silica monolithic columns in high pressure gas chromatography. | LitMetric

Behavior of macroporous vinyl silica and silica monolithic columns in high pressure gas chromatography.

J Chromatogr A

Univ Lyon, CNRS, Université Claude Bernard Lyon 1, Ens de Lyon, Institut des Sciences Analytiques, UMR 5280, 5 rue de la Doua, F-69100 Villeurbanne, France. Electronic address:

Published: June 2017

AI Article Synopsis

  • 80% vinyltrimethoxysilane-based hybrid silica monoliths (80-VTMS) were tested for high pressure gas chromatography, initially designed for liquid chromatography.
  • The study explored the impact of different carrier gases (helium, nitrogen, and carbon dioxide) on the efficiency and retention behavior of both 80-VTMS and traditional silica monolithic columns under high pressure conditions.
  • Results showed that 80-VTMS monoliths performed exceptionally well, achieving separation of eight compounds in under one minute, with retention varying by gas type and temperature.

Article Abstract

80% vinyltrimethoxysilane-based hybrid silica monoliths (80-VTMS), which have been initially developed for separation in reversed-phase liquid chromatography, have been investigated in high pressure gas chromatography separations (carrier gas pressure up to 60bar) and compared to silica monolithic columns. The behavior of both silica and 80-VTMS monolithic columns was investigated using helium, nitrogen and carbon dioxide as carrier gas. The efficiency of 80-VTMS monolithic columns was shown to vary differently than silica monolithic columns according to the temperature and the carrier gas used. Carrier gas nature was a significant parameter on the retention for both silica and vinyl columns in relation to its adsorption onto the stationary phase in such high pressure conditions. The comparison of retention and selectivity between 80-VTMS monoliths and silica was performed under helium using the logarithm of the retention factor according to the number of carbon atoms combined to Kovats indexes. The very good performances of these columns were demonstrated, allowing the separation of 8 compounds in less than 1min.

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Source
http://dx.doi.org/10.1016/j.chroma.2017.05.002DOI Listing

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