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The DCpak PBT HPLC/SFC column 150x2.1mm, 5µm, based on polybutylene terephthalate as the polymeric selector. The precise modification of DCpak PBT results in polymeric achiral selectivity. DCpak PBT is used in normal-phase HPLC, reverse-phase HPLC and SFC, and is particularly suitable for structural isomers, positional isomers, flavonoids, caffeine derivatives, terpenes and related fine chemicals. Due to its polymeric structure, DCpak PBT offers orthogonal selectivity; however, it should not be regarded as a substitute for Chiralpak or Chiralcel enantiomer separations.
DCpak differs fundamentally from Chiralcel, Chiralpak, or CROWNPAK, as its phases are achiral and polymer-based. The focus is on orthogonal separation mechanisms for structurally similar, polar, or difficult-to-separate achiral mixtures. The backbone is not derived from amylose or cellulose. Instead, polymeric selectors with defined chemical functionality are used, such as ester-, pyridine-, tetrazole-, or phosphorylcholine-based structures. The advantage of polymeric DCpak phases lies in their robustness and alternative selectivity compared to classical silica, C18, or HILIC phases. The disadvantage is that enantiomer separation, as seen with chiral polysaccharide phases, is not to be expected; DCpak should be used specifically for achiral selectivity challenges.
DCpak is a registered trademark of Daicel Corporation, Osaka, Japan.
| Brand | Dcpak |
|---|---|
| Product Type | SFC Column |
| Length | 150 mm |
| Internal Diameter | 2.1 mm |
| Particle Size | 5 µm |
| Chemistry | Polybutylene terephthalate |
| Chemistry Producers Term | PBT |
| Country of Origin | Japan |
| Column Type | Analytical Column |
| Base Material | Silica |
| Hardware Material | Stainless Steel |
| Hardware Type | Ready-to-use Column |
| Temperature Maximum [°C] | 40 |
| Mode of Separation | Supercritical Fluid Chromatography (SFC) |
| Technology | HPLC |
| Matrix | Silica |
| Particle Morphology | fully porous |
| Pressure Stability | 300 bar |