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The Chiralpak OT(+) Front pillars 50x4.6mm, 10µm, are placed in front of the Chiralpak OT(+) HPLC and SFC columns are fitted with filters to protect the columns from particles, matrix components and strongly adsorbing sample components. They are particularly useful in chiral methods, as even small changes to the stationary phase can affect the resolution of the enantiomers. Chiralpak pre-column cartridges should be selected to suit the main column being used and the approved mobile phase. As these are packed pre-columns, no holder is required.
Chiralpak includes both amylose-based and cellulose-based polysaccharide phases. In the immobilized phases, the chiral selector is fixed to the silica support. This allows for the use of significantly more organic solvents than with coated phases, which is particularly helpful when samples have limited solubility. Coated Chiralpak phases are based on polysaccharide derivatives physically applied to silica. They have a long history of use and often offer very high selectivity and good loading capacity. The most important limitation is solvent compatibility: mobile phases or sample solutions that can dissolve the polysaccharide layer must be avoided. Immobilized and coated variants with similar modifications are not necessarily chromatographically interchangeable. Immobilization increases robustness and solvent flexibility but can alter the spatial accessibility of the selector. Therefore, methods should be reviewed when switching between coated and immobilized phases and reoptimized as needed.
Chiralpak is a registered trademark of Daicel Corporation, Osaka, Japan.
| Brand | Chiralpak |
|---|---|
| Product Type | HPLC Guard Columns |
| Length | 50 mm |
| Internal Diameter | 4.6 mm |
| Particle Size | 10 µm |
| Chemistry | Chiral |
| Chemistry Producers Term | OT(+) |
| Country of Origin | Japan |
| Base Material | Silica |
| Hardware Material | Stainless Steel |
| Hardware Type | Ready-to-use Column |
| Mode of Separation | Chiral Chromatography |
| Technology | HPLC |
| Matrix | Silica |
| Particle Morphology | fully porous |