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The HALO 1.000Å Diphenyl HPLC column 50x2.1mm, 2.7µm, has two phenyl units on a core-shell particle that are directly bonded to the silane. This results primarily in dipole-dipole and π-π interactions, as well as weaker hydrophobic interactions. This makes this phase suitable for reverse-phase chromatography. These various interactions of the HALO 1.000Å Diphenyl result in alternative selectivities compared to a C18 or C4 phase. The large pores of 1.000Å enable the analysis of large proteins and antibodies (mAb), such as denosumab, IgG2, or trastuzumab. The inert stainless steel hardware also ensures that potential interactions between analytes and the stainless steel hardware are prevented.
The HALO Bioclass series is based on a core-shell material. This means that the particles have a non-porous core and a porous shell. This allows for high efficiency while maintaining low backpressure. As a result, UHPLC performance is possible using a standard HPLC system. Compared to the HALO series, the HALO Bioclass series features larger pores (160 Å, 400 Å, and 1,000 Å). This allows biological samples—ranging from small peptides to proteins and antibodies—to be analyzed using core-shell technology. The service life can be extended by using appropriate precolumn cartridges.
HALO is a registered trademark of the manufacturer Advanced Materials Technology, Inc., Wilmington, USA.
| Brand | Halo Protein INERT |
|---|---|
| Product Type | CoreShell Column |
| Length | 50 mm |
| Internal Diameter | 2.1 mm |
| Particle Size | 2.7 µm |
| Chemistry | Biphenyl |
| Chemistry Producers Term | Diphenyl |
| Pore Size | 1.000 Å (10e3 Å) |
| USP Class | L11 |
| Carbon Load | 1.0 % |
| Bet Surface Area [m2/g] | 22.0 |
| Endcapping | endcapped |
| Country of Origin | United States of America (USA) |
| Column Type | Analytical Column |
| Hardware Material | Inert Stainless Steel |
| Hardware Type | Ready-to-use Column |
| pH Minimum | 2.0 |
| pH Maximum | 9.0 |
| Mode of Separation | Reversed Phase Chromatography (RP) |
| Technology | HPLC |
| Matrix | Silica |
| Particle Morphology | spherical, solid core, porous shell |
| Pressure Stability | 600 bar |