Halo C8 90Å 2.7µm 50x0.5mm CoreShell Column 1 pc

Part Number: AMT-98215-408
Manufacturer: Advanced Materials Technology
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Delivery Time: approx. 18 days
Excl. 19% taxes, excl. Shipping costs
Packaging unit: 1 pc, Minimum order quantity: 1 pc
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Product Description

The HALO C8 90Å HPLC column 50x0.5mm, 2.7µm, is based on a standard octysilyl phase (also known as OS, RP-8, C8) with a core-shell particle for reverse-phase chromatography. The hydrophobic interactions of the HALO C8 are lower compared to the HALO C18 column. As a result, nonpolar analytes elute earlier, while selectivity remains comparable. Therefore, this phase is used, for example, in pharmaceuticals, environmental analysis, and for highly hydrophobic analytes.

Features and Benefits

  • Core-shell particles for fast methods
  • UHPLC performance on HPLC systems
  • High efficiency
  • Low backpressure

Additional Notes

The HALO 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 with a standard HPLC system. This makes the HALO Series an attractive option for laboratories that require maximum performance with the shortest possible retention times. The service life can be extended by using appropriate pre-column cartridges.

Legal Notices

HALO is a registered trademark of the manufacturer Advanced Materials Technology, Inc., Wilmington, USA.

Product Specification

Brand Halo
Product Type CoreShell Column
Length 50 mm
Internal Diameter 0.5 mm
Particle Size 2.7 µm
Chemistry C8 (RP-8, MOS, Octyl)
Chemistry Producers Term C8
Pore Size 90 Å
USP Class L7
Carbon Load 5.4 %
Bet Surface Area [m2/g] 150.0
Endcapping endcapped
Country of Origin United States of America (USA)
Column Type Capillary Column
Hardware Material 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

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