Ascentis® Express HILIC, HPLC Column, 5 µm particle size, L x I.D. 15 cm x 3 mm

Part Number: SU-50270-U
Manufacturer: Merck Supelco
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Delivery Time: approx. 3 days
Excl. 19% taxes, excl. Shipping costs
Packaging unit: 1 pc, Minimum order quantity: 1 pc
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Product Description

The Ascentis Express HILIC HPLC-/UHPLC column 150x3.0mm, 5µm, is based on a silica surface for HILIC and normal phase separations. The Ascentis Express HILIC provides strong retention for very polar compounds that are scarcely retained on reversed phases.The Ascentis Express HILIC is used for polar metabolites, sugars, organic acids, nucleobases and LC–MS methods with a high organic content.

Features and Benefits

  • Fused-Core particle technology
  • High efficiency at moderate pressure
  • Wide range of RP, HILIC, and specialty selectivities
  • Suitable for HPLC and UHPLC
  • Directly compatible guard cartridge column protection

Additional Notes

Ascentis Express columns are based on fused-core or superficially porous particles. A solid core combined with a porous shell provides short diffusion paths and an efficient packing structure. As a result, high column numbers and narrow peaks can be achieved, often without reaching the backpressure associated with fully porous sub-2-µm particles. The platform includes classic reverse-phase columns, polar embedded phases, HILIC phases, and application-specific surface chemistries.

Legal Information

Ascentis Express is a registered trademark of the manufacturer Merck KGaA, Darmstadt, Germany.

Product Specification

Brand Ascentis Express
Product Type CoreShell Column
Length 150 mm
Internal Diameter 3.0 mm
Particle Size 5 µm
Chemistry Silica
Chemistry Producers Term HILIC
Pore Size 90 Å
USP Class L3
Bet Surface Area [m2/g] 90.0
Endcapping non endcapped
Country of Origin Germany
Column Type Analytical Column
Hardware Material Stainless Steel
Hardware Type Ready-to-use Column
pH Minimum 1.0
pH Maximum 8.0
Mode of Separation Hydrophilic Interaction Chromatography (HILIC)
Technology HPLC
Matrix Silica
Particle Morphology spherical, solid core, porous shell

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