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Aviator C4 is the ideal choice for separating polar, moderately polar, and non-polar analytes (including uncharged acids and bases, strong acids or bases in un-ionized form or in ionized form using an ion-pair modifier.) Aviator C4 columns produce better peak shape and column efficiency when separating troublesome compounds.
Chromegabond BAS Phenyl is prepared using the same bonding technology as that used in our AquaSep columns on a lower surface area silica.
Chromega Z Phenyl HPLC Columns exibit equivalent selectivity, retentions and peak symmetry to Zorbax Phenyl HPLC Columns.
Chromegabond Amine RP Columns based on aminopropyl bonding provide superior, reproducible separations and long column life with excellent peak symmetry. Chromegabond Amine RP is designed for use in reverse phase chromatography.
Chromegabond C3 Columns based on C3 bonding to provide superior, reproducible separations and long column life with excellent peak symmetry.
The Aviator line has identical selectivity to ACE HPLC columns. Aviator AQ is a C18 bonded phase with integral polar functionality which is resistant to phase collapse even with 100% aqueous mobile phase. Recommended for applications where 100% aqueous mobile phases are required. Ideal for fast gradients due to rapid re-equilibration properties.
AquaSep is the clear choice for the discriminating HPLC chromatographer faced with a difficult separation challenge such as polar compounds, compounds requiring a highly aqueous mobile phase or difficult to retain compounds. The AquaSep phase has been specially developed using patented technology for use with highly aqueous mobile phases, including 100% aqueous. Our unique patented approach provides a complete solution to ensure that AquaSep is totally resistant to “phase collapse” under all mobile phase conditions.
Aviator Phenyl exhibits hydrophobicity between C4 and C8 phases, with increased polar selectivity. Improved performance, stability and reproducibility compared to conventional phenyl phases. Compatible with highly aqueous mobile phases.
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