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The ProteoSil 300-C4 HPLC column 50x4.6mm, 5µm, features a butylsilyl modification on high-purity silica with a pore size of 300 Å. The short C4 chain produces fewer hydrophobic interactions than C8 or C18 phases. As a result, the ProteoSil 300-C4 can separate large proteins, hydrophobic peptides, monoclonal antibodies, and larger oligonucleotides and nucleic acids more gently and often with shorter retention times. This phase is particularly useful when strong adsorption to more hydrophobic surfaces needs to be avoided. Typical applications include protein and peptide analysis, biopharmaceutical quality control, and RP methods for large or sensitive biomolecules.
The ProteoSil series is designed for bioseparations in which pore size, modification, and hardware must be specifically tailored to sensitive biomolecules. It is based on a high-purity silica matrix with pore sizes of 100 Ã…, 200 Ã…, or 300 Ã…. Smaller pores are particularly suitable for low-molecular-weight peptides, while 200 Ã… materials are used for medium-sized peptides and oligonucleotides. For larger proteins, hydrophobic peptides, and antibodies, 300 Ã… materials are available. In addition, ProteoSil HILIC and ProteoSil SEC round out the series for hydrophilic analytes and size-based separations. Using appropriate ProteoSil pre-column cartridges or guard columns, the analytical column can be protected from particles, strongly adsorbing sample components, and matrix carryover.
ProteoSil is a registered trademark of the manufacturer GL Sciences Inc., Tokyo, Japan.
| Brand | ProteoSil |
|---|---|
| Product Type | HPLC Column |
| Length | 50 mm |
| Internal Diameter | 4.6 mm |
| Particle Size | 5 µm |
| Chemistry | C4 |
| Chemistry Producers Term | 300-C4 |
| Pore Size | 300 Ã… |
| USP Class | L26 |
| Carbon Load | 3.0 % |
| Bet Surface Area [m2/g] | 150.0 |
| Endcapping | non 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 | HPLC |
| Matrix | Silica |
| Particle Morphology | fully porous |