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Investigating retention characteristics of a mixed‐mode stationary phase and the enhancement of monolith selectivity for high‐performance liquid chromatography
Authors:Danielle N Bassanese  Arianne Soliven  Paul G Stevenson  Gary R Dennis  Neil W Barnett  Ross A Shalliker  Xavier A Conlan
Affiliation:1. Faculty of Science, Engineering and Built Environment, Centre for Chemistry and Biotechnology, Deakin University, Geelong, Victoria, Australia;2. Australian Centre for Research on Separation Science (ACROSS), School of Science and Health, University of Western Sydney (Parramatta), Sydney, NSW, Australia
Abstract:The synthesis and chromatographic behavior of an analytical size mixed‐mode bonded silica monolith was investigated. The monolith was functionalized by an in situ modification process of a bare silica rod with chloro(3‐cyanopropyl)dimethyl silane and chlorodimethyl propyl phenyl silane solutions. These ligands were selected in order to combine both resonance and nonresonance π‐type bonding within a single separation environment. Selectivity studies were undertaken using n‐alkyl benzenes and polycyclic aromatic hydrocarbons in aqueous methanol and acetonitrile mobile phases to assess the methylene and aromatic selectivities of the column. The results fit with the linear solvent strength theory suggesting excellent selectivity of the column was achieved. Comparison studies were performed on monolithic columns that were functionalized separately with cyano and phenyl ligands, suggesting highly conjugated molecules were able to successfully exploit both of the π‐type selectivities afforded by the two different ligands on the mixed‐mode column.
Keywords:Aromatic Selectivity  Cyano columns  Methylene Selectivity  Mixed‐mode columns  Phenyl columns
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