Prep HPLC Column, NP Silica, Wide Pore, 10um, 300A. 21.2mm ID x 100mm Length. Cogent Brand. 1 EA.

Additional Information:

Cogent NP Silica™ Wide Pore Preparative HPLC Columns are trusted by leading laboratories and pilot plants worldwide for compound purification, method scale-up, and process chromatography applications. Manufactured from ultra-high purity, low metal content, 300Å silica that remains completely unmodified, this stationary phase provides the native silica selectivity required for the purification of proteins, peptides, biomolecules, lipids, and other large hydrophilic or polar compounds. The wide pore structure improves accessibility for larger analytes and supports both HILIC and Normal Phase chromatography.

82061-P21-1003M is packed with 10 µm NP Silica™ Wide Pore particles in a 21.2 mm ID x 100 mm preparative column format. The larger particle size allows operation at higher flow rates while generating lower backpressure than smaller particle columns. The 21.2 mm internal diameter provides substantial sample loading capacity for preparative separations, compound isolation, and purification workflows, while the 100 mm length offers an excellent balance between throughput and chromatographic performance.

For many years, 10 µm NP Silica™ Wide Pore columns have been used in pharmaceutical, biotechnology, cannabis, chemical, and forensic laboratories around the world for preparative HPLC and purification applications. The 300Å pore structure is particularly beneficial for large molecules such as proteins and peptides, while the stationary phase chemistry scales directly from analytical columns to preparative and purification formats. Methods developed on analytical NP Silica™ Wide Pore columns can often be transferred directly to larger ID columns with predictable chromatographic behavior, helping streamline scale-up and production workflows.

Key Benefits

  • NP Silica™ Wide Pore stationary phase

  • USP L3 equivalent chemistry

  • Ultra-high purity silica

  • Low metal content silica

  • Unmodified silica surface

  • 300Å wide pore design

  • 10 µm particle size

  • Lower operating backpressure

  • High sample loading capacity

  • Ideal for preparative HPLC and purification

Typical Applications

  • Preparative HPLC

  • Protein purification

  • Peptide purification

  • Biomolecule isolation

  • Large molecule separations

  • HILIC chromatography

  • Normal Phase chromatography

  • Pharmaceutical purification

  • Cannabis purification

  • Process-scale chromatography

Specifications

  • Product Type: Preparative HPLC Column

  • Stationary Phase: NP Silica™ Wide Pore

  • USP Classification: L3

  • Chromatography Modes: HILIC and Normal Phase

  • Particle Size: 10 µm

  • Pore Size: 300Å

  • Column Dimensions: 21.2 mm ID x 100 mm

  • Recommended Flow Rate: 15–40 mL/min

  • Sample Loading Capacity: Preparative Scale

  • Column Hardware: Stainless Steel

  • Brand: Cogent

Important Notes

  • Suitable for HILIC and Normal Phase chromatography

  • USP L3 equivalent stationary phase

  • Unmodified silica surface chemistry

  • Manufactured from ultra-high purity, low metal content silica

  • 300Å wide pore structure provides improved accessibility for proteins, peptides, and other large molecules

  • Designed for purification of large hydrophilic, polar, and charged compounds

  • Lower operating pressure than smaller particle preparative columns

  • High loading capacity for compound isolation and purification

  • Frequently used in pharmaceutical, biotechnology, cannabis, chemical, and forensic laboratories

  • Proven preparative HPLC technology used globally for many years

  • Directly scalable from analytical NP Silica™ Wide Pore column methods

  • Excellent for method scale-up, purification development, and process chromatography

  • Requires a preparative HPLC system capable of supporting higher flow rates and larger column dimensions

  • 100 mm length provides an effective balance of purification throughput and chromatographic performance

Special Order Item Information


© Copyright 2026. MICROSOLV. All Rights Reserved. Website & Hosting by BlueTone Media