InertCore Biphenyl 2.6 um 4.6 x 150 mm

Part Number: 5020-17553
Manufacturer: GL Sciences
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Delivery Time: approx. 7 days
Excl. 19% taxes, excl. Shipping costs
Packaging unit: 1 pc, Minimum order quantity: 1 pc
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Product Description

The InertCore Biphenyl HPLC column 150x4.6mm, 2.6µm, features a biphenyl modification on a core-shell particle for reverse-phase chromatography. The biphenyl ligand enables very strong π-π interactions, and the two phenyl groups also result in stronger hydrophobic interactions compared to other phenyl phases. As a result, the InertCore Biphenyl delivers strong retention and excellent selectivity. In addition, it offers alternative selectivity compared to C18 phases. This phase can be used, for example, in the analysis of nucleotides, cyclic nucleotides, aldehydes, or nucleoside-based antiviral drugs.

Features and Benefits

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

Additional Information

The InertCore series consists of a core-shell material. This means that the particles have a non-porous core and a porous shell. This particle design results in high efficiency combined with low backpressure. As a result, UHPLC performance is possible on an HPLC system. This makes these columns ideal for anyone who wants to get more performance out of an existing system or speed up a method. The service life can be extended by using appropriate precolumn cartridges.

Legal Information

InertCore is a registered trademark of the manufacturer GL Sciences Inc., Tokyo, Japan.

Product Specification

Brand InertCore
Product Type CoreShell Column
Length 150 mm
Internal Diameter 4.6 mm
Particle Size 2.6 µm
Chemistry Biphenyl
Chemistry Producers Term Biphenyl
Pore Size 90 Ã…
USP Class L11
Carbon Load 10.0 %
Bet Surface Area [m2/g] 200.0
Endcapping endcapped
Country of Origin Japan
Column Type Analytical Column
Hardware Material Stainless Steel
Hardware Type Ready-to-use Column
pH Minimum 1.5
pH Maximum 8.5
Mode of Separation Reversed Phase Chromatography (RP)
Technology HPLC
Matrix Silica
Particle Morphology spherical, solid core, porous shell
Pressure Stability 600 bar