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The Chiralcel OZ HPLC column 250x10mm, 10µm, based on cellulose as the polysaccharide backbone. The specific modification used is cellulose tris(3-chloro-4-methylphenylcarbamate); the chiral stationary phase is physically coated and applied to spherical silica. Chiralcel OZ is primarily used in normal-phase chromatography and SFC, and, depending on the version, also in reverse-phase chromatography. In this process, the phase separates the enantiomers via hydrogen bonding, dipole–dipole interactions, π–π interactions and steric fit. Typical applications of the Chiralcel OZ include halogenated and aromatic drug candidates, fine chemicals and substances with strong π-interactions. The chloro-methyl substitution makes Chiralcel OZ particularly interesting as a complement to OD and OJ methods.
The Chiralcel phases are based on cellulose-derived polysaccharides that are physically coated onto a silica scaffold to serve as chiral selectors. The cellulose structure creates an ordered, chiral environment, while the specific derivatization—for example, phenylcarbamate, benzoate, acetate, or cinnamate—determines the specific hydrogen-bond, dipole, π-π, and hydrophobic interactions. The advantage of the coated Chiralcel phases lies in their very broad, proven selectivity and often good loading capacity, particularly for preparative separations. The disadvantage is limited solvent compatibility: highly solvent organic solvents can impair the physically applied polysaccharide layer. For a robust method, Chiralcel pre-column cartridges with a suitable phase should be used, as chiral polysaccharide phases can be sensitive to matrix components, particles, and strongly adsorbing sample components.
Chiralcel is a registered trademark of the manufacturer Daicel Corporation, Osaka, Japan.
| Brand | Chiralcel |
|---|---|
| Product Type | SFC Column |
| Length | 250 mm |
| Internal Diameter | 10 mm |
| Particle Size | 10 µm |
| Chemistry | Chiral |
| Chemistry Producers Term | OZ |
| Country of Origin | Japan |
| Column Type | Semi-preparative Column |
| Base Material | Cellulose tris(3-chloro-4-methylphenylcarbamate) |
| Hardware Material | Stainless Steel |
| Hardware Type | Ready-to-use Column |
| Temperature Maximum [°C] | 40 |
| Mode of Separation | Chiral Chromatography |
| Technology | HPLC |
| Matrix | Silica |
| Particle Morphology | fully porous |
| Pressure Stability | 300 bar |