1986Journal of High Resolution ChromatographyRequires access

Supercritical fluid injection of high‐molecular‐weight polycyclic aromatic compounds in capillary supercritical fluid chromatography

W.P. Jackson, Karin E. Markides, M. L. Lee

Open publisher page 25 citations

Abstract

Abstract A sample introduction system for capillary supercritical fluid chromatography, which allows the dissolution of the sample in the supercritical mobile phase before being introduced into the column, was constructed and evaluated. Supercritical n‐pentane was shown to solvate high‐molecular‐weight polycyclic aromatic compounds that could not be solvated using typical liquid solvents. In addition, split injection of a supercritical fluid solution was found to be more reproducible than split injections of a liquid solution. The potential of such an injection system was demonstrated, although further developments are needed in order to make the technique of practically utility.

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What this paper is about

Abstract A sample introduction system for capillary supercritical fluid chromatography, which allows the dissolution of the sample in the supercritical mobile phase before being introduced into the column, was constructed and evaluated. Supercritical n‐pentane was shown to solvate high‐molecular‐weight polycyclic aromatic compounds that could not be solvated using typical liquid solvents. In addition, split injection of a supercritical fluid solution was found to be more reproducible than split injections of a liquid solution. The potential of such an injection system was demonstrated, although further developments are needed in order to make the technique of practically utility.

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Available abstract

Abstract A sample introduction system for capillary supercritical fluid chromatography, which allows the dissolution of the sample in the supercritical mobile phase before being introduced into the column, was constructed and evaluated. Supercritical n‐pentane was shown to solvate high‐molecular‐weight polycyclic aromatic compounds that could not be solvated using typical liquid solvents. In addition, split injection of a supercritical fluid solution was found to be more reproducible than split injections of a liquid solution. The potential of such an injection system was demonstrated, although further developments are needed in order to make the technique of practically utility.

Key concepts: Supercritical fluid, Supercritical fluid chromatography, Capillary action, Chromatography, Chemistry, Dissolution, Supercritical fluid extraction, Phase (matter)

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