Title of article :
Preparation of low flow-resistant methacrylate-based monolithic stationary phases of different hydrophobicity and the application to rapid reversed-phase liquid chromatographic separation of alkylbenzenes at high flow rate and elevated temperature
Author/Authors :
Ueki، نويسنده , , Yuji and Umemura، نويسنده , , Tomonari and Iwashita، نويسنده , , Yoshikazu and Odake، نويسنده , , Tamao and Haraguchi، نويسنده , , Hiroki and Tsunoda، نويسنده , , Kin-ichi، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Pages :
6
From page :
106
To page :
111
Abstract :
Low flow-resistant alkyl methacrylate-based monolithic stationary phases of different hydrophobicity were constructed for reversed-phase capillary liquid chromatography by thermally initiated radical polymerization of respective methacrylate ester monomer with different alkyl chain (C2, C4, C6, C12, C18) and ethylene glycol dimethacrylate (EDMA) in a 250 μm i.d. fused silica capillary. The hydrophobicity was basically controlled by changing the length and/or the density of the alkyl-chain, while the composition and the ratio of porogenic solvent were adjusted to obtain highly permeable rigid monoliths with adequate column efficiency. Among the prepared monolithic stationary phases, C18-methacrylate monoliths polymerized from a binary porogenic solvent of isoamyl alcohol and 1,4-buthandiol exhibited the most promising performance in terms of hydraulic resistance and column efficiency. The pressure drops of 20-cm long monolithic columns were below ∼0.4 MPa at a normal linear velocity of 1 mm/s (a flow rate of 3 μL/min), and the numbers of theoretical plates for alkylbenzenes mostly exceeded 3000 plates/20 cm. The produced monolithic columns had good mechanical strength for high pressure and temperature, and could be properly operated even at a temperature of 80 °C and at a pressure of at least 33 MPa. At 80 °C, the theoretical plate numbers reached 6000 plates/20 cm because of the enhanced mass transfer. Due to the novel hydraulic resistance and mechanical strength, the separation time could be reduced 120-fold simply by raising the flow rate and column temperature.
Keywords :
Reversed-phase capillary liquid chromatography , Flow rate gradient , Octadecyl methacrylate , Monolithic column
Journal title :
Journal of Chromatography A
Serial Year :
2006
Journal title :
Journal of Chromatography A
Record number :
1525200
Link To Document :
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