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Through-pore polymerization in polar high-performance liquid chromatography columns allowing scanning electron microscopy based imaging of the packing order

Tijdschriftbijdrage - Tijdschriftartikel

To allow an enhanced understanding of the order in packed HPLC columns, in this work a methodology for immobilizing native polar silica particles is developed based on the polymerization of a methyl methacrylate (MMA) and ethylene glycol dimethacrylate (EGDMA) as a cross-linker in the interstitial pores of HPLC columns. Subsequent mechanical cutting then allows scanning electron microscopy (SEM) based imagery of cross-sections of the packed bed. In this way, the packing efficiency of home-made and commercial HPLC columns with 4.6 mm inner diameter and 150 mm length comprising the same packing material of 5 mu m silica particles are compared. The methodology is developed for native silica used in e.g. hydrophilic interaction liquid chromatography (HILIC) and in normal phase LC. In order to confirm the feasibility of the developed methodology, the conventional methods for the evaluation of column, efficiency and porosity, are also employed. The obtained porosity information is compared and showed the same trend with the external porosity measurements obtained via inverse size exclusion approach, illustrating its potential application to study the micro-heterogeneity of packed HPLC columns and to guide the optimization of the packing process of HPLC columns. (C) 2020 Elsevier B.V. All rights reserved.
Tijdschrift: Journal of chromatography
ISSN: 0021-9673
Volume: 1638
Jaar van publicatie:2021
Trefwoorden:HPLC, HILIC, Packing quality, SEM imaging, External porosity, through pores
BOF-keylabel:ja
IOF-keylabel:ja
BOF-publication weight:3
Auteurs:Regional
Authors from:Higher Education
Toegankelijkheid:Open