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The Inertsil ODS-4 HPLC column 50x2.1mm, 2µm, is based on an octadecyl phase (also known as ODS, RP-18, C18) for reverse-phase chromatography. The phase was developed for high inertness, good peak shapes, and stable performance even with highly aqueous mobile phases. Compared to traditional C18 phases, Inertsil ODS-4 exhibits modern, balanced C18 selectivity and is well-suited for routine qualitative and quantitative analysis. Typical applications include LC/MS methods, pharmaceutical quality control, chelating agents, acidic and basic compounds, food analysis, and environmental analysis.
The Inertsil series is based on a high-purity, spherical silica matrix whose pore structure, particle size distribution, and surface are carefully controlled during production. Low metal contamination and careful surface treatment reduce the activity of free silanol groups. This minimizes undesirable secondary interactions—particularly tailing and adsorption with basic or chelating analytes—and promotes stable retention times. This reproducible silica matrix forms the basis for the various Inertsil modifications and ensures reliable selectivities across the series. Appropriate Inertsil pre-column cartridges should be used to protect the analytical packing bed from particles and the sample matrix and to extend column lifespan.
Inertsil is a registered trademark of the manufacturer GL Sciences Inc., Tokyo, Japan.
| Brand | Inertsil |
|---|---|
| Product Type | (U)HPLC Column |
| Length | 50 mm |
| Internal Diameter | 2.1 mm |
| Particle Size | 2 µm |
| Chemistry | C18 (RP-18, ODS, Octadecyl) |
| Chemistry Producers Term | ODS-4 |
| Pore Size | 100 Å |
| USP Class | L1 |
| Carbon Load | 11.0 % |
| Bet Surface Area [m2/g] | 450.0 |
| Endcapping | endcapped |
| Country of Origin | Japan |
| Column Type | Analytical Column |
| Hardware Material | Stainless Steel |
| Hardware Type | Ready-to-use Column |
| pH Minimum | 2.0 |
| pH Maximum | 7.5 |
| Mode of Separation | Reversed Phase Chromatography (RP) |
| Technology | U(H)PLC |
| Matrix | Silica |
| Particle Morphology | spherical, fully porous |
| Pressure Stability | 800 bar |