Polyether ether ketone encased monolith frits made of polyether ether ketone tubing with a 0.25 mm opening resulting in an improved separation performance in liquid chromatography

Tiny polyether ether ketone encased monolith frits have been prepared by modified catalytic sulfonation of the inner surface of polyether ether tubing (1.6 mm od, 0.25 mm id) followed by modified formation of organic monolith and cutting of the tubing into slices. The frit was placed below the centr...

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Veröffentlicht in:Journal of separation science 2016-05, Vol.39 (10), p.1799-1803
Hauptverfasser: Park, Sin Young, Cheong, Won Jo
Format: Artikel
Sprache:eng
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Zusammenfassung:Tiny polyether ether ketone encased monolith frits have been prepared by modified catalytic sulfonation of the inner surface of polyether ether tubing (1.6 mm od, 0.25 mm id) followed by modified formation of organic monolith and cutting of the tubing into slices. The frit was placed below the central hole of the column outlet union and supported by a combination of a silica capillary (0.365 mm od, 0.05 mm id) and a polyether ether ketone sleeve (1.6 mm od, 0.38 mm id) tightened with a nut and a ferrule when the column was packed to prevent sinking of the frit element into the union hole (0.25 mm opening) otherwise. The column packed this way with the frits investigated in this study has shown better separation performance owing to the reduced frit volume in comparison to the column packed with a commercial stainless‐steel screen frit. This study establishes the strategy of disposable microcolumns in which cheap disposable frits are used whenever the column is re‐packed to yield columns of even better chromatographic performance than the columns with commercial frits.
ISSN:1615-9306
1615-9314
DOI:10.1002/jssc.201600040