Abstract:Novel chiral stationary phases (CSP) have been prepared by coating the internal surface of monodisperse macroporous poly(2-aminoethyl methacrylate-co-ethylene dimethacrylate) beads with dimethylphenylcarbamate derivatives of regenerated cellulose. The coating was achieved either by simple adsorption or by chemical bonding using a diisocyanate linker. Separation of enantiomers in normal-phase HPLC mode was used to evaluate the enantioselectivity of all CSPs. The influence of the properties of the polymer suppor… Show more
“…Seeded polymerizations seem to be suitable for production of SEC beads [427] since the pore size and pore size distribution can be easily controlled in the second swelling step. For HPLC columns, aerosol and precipitation [51,281] polymerizations are also available, together with seeded polymerizations [12,[68][69][428][429].…”
“…Seeded polymerizations seem to be suitable for production of SEC beads [427] since the pore size and pore size distribution can be easily controlled in the second swelling step. For HPLC columns, aerosol and precipitation [51,281] polymerizations are also available, together with seeded polymerizations [12,[68][69][428][429].…”
“…Thus, the analytes have no access to the native surface of the support and non-specific interactions with the surface functionalities are not observed. [37].…”
Section: The Preparation Methods Of Covalently Bonded Cspsmentioning
“…The unmasked hydroxyl group at the cellulose was then linked to γ-aminopropylsilica gel via a diisocyanate spacer, and the corresponding materials were exhaustively capped with 3,5-dimethyl-or 3,5-dichlorophenylisocyanate to form the corresponding isocyanates. Several related protocols have been used by this or other groups [102][103][104] with some experimental modifications, one of them pursuing the immobilization of cellulose derivatives on polymer beads [105].…”
Section: Fixation Via Bifunctional Grafting Agentsmentioning
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