Order number: 35EP.1
Part number: AC100007583
Intended for structured formulation workflows, the Hplc Column Nucleodur® C 18 Gravity, 5 μm, 150 mm, 3 mm offers exceptional performance for the separation of basic and ionizable analytes due to its endcapped C 18 phase based on high purity NUCLEODUR® silica gel. With an enhanced pH stability ranging from 1 to 11, this column is ideal for method development and RP applications, making it a valuable tool for separating pharmaceuticals, antidepressants, anti-inflammatory drugs, herbicides, immunosuppressants, and various other compounds with ionizable functional groups. Its particle size of 5 μm ensures efficient separation while maintaining pressure stability up to 600 bar and temperature stability at 60° Celsius. Additionally, the column's
| Name | Value | |
|---|---|---|
| Phase | : | C 18 Gravity |
| Endcapped | : | yes |
| Pore size | : | 110 Å |
| Column type | : | HPLC column |
| Pore volume | : | 0.9 ml/g |
| USP listing | : | L1 |
| Column shape | : | Analytical separation column |
| pH stability | : | 1,0-11,0 |
| Column volume | : | 1.05 ml |
| Particle size | : | 5 µm |
| Particle type | : | Fully porous particles (FPP) |
| Similar phases | : | NUCLEOSIL ® C 18 HD Xterra ® RP 18 / MS C 18 Luna ® C 18 (2) Gemini ® Synergi™ Max RP Zorbax ® Extend C 18 Inertsil ® ODS III Purospher ® Star RP-18 Hypersil™ BDS |
| Eluent in column | : | Acetonitrile - Water |
| Surface chemistry | : | Base deactivated (BDS), High density octadecyl (C 18 , ODS) modification |
| Pressure stability | : | 600 bar |
| Separation principle | : | Reversed phase (RP) |
| Temperature stability | : | 60 ° C |
| L x Ø internal (column) | : | 150 x 3 mm |
| Recommended application(s) | : | In general compounds with ionizable functional groups such as basic pharmaceuticals and pesticides Analgesics Antidepressants Applications for extreme pH values (1-11) Anti-inflammatory drugs Herbicides Ideal for method development Immunosuppressants Pharmaceutical products Phytopharmaceuticals |
| Specific surface according to BET | : | 340 m²/g |
| Interactions / retention mechanism | : | hydrophobic (van der Waals) |
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© 2026 Copyright. All Rights Reserved.