ZORBAX RRHD 300Å HILIC Column, 2.1 x 50 mm, 1.8 µm, 1200 bar. Allows for higher resolution separations in shorter run times. The column is stable up to 1200 bar, making it suitable for demanding applications. Ideal for glycopeptide analysis.
Specifications:
Brand: ZORBAX
Carbon Load: 0 %
Endcapped: No
Guard Column: No
Hardware: Conventional
Inner Diameter (ID): 2.1 mm
LC Platform: Low Dispersion UHPLCUHPLC
Length: 50 mm
Molecular Weight Lower Limit: 0 Da
Molecular Weight Upper Limit: 3000 Da
Particle Size: 1.8 µm
Particle Type: Fully Porous
Phase: HILIC
Pore Size: 300 Å
Pressure Rating: 1200 bar
Separation Mode: HILIC
Shipping Solvent: Acetonitrile/Water
UNSPSC Code: 41115709
pH Range: 1-8
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Engineered for high-performance liquid chromatography, this ultra-high-pressure HILIC column incorporates 1.8 micron silica particles with a 300 angstrom pore size, enabling excellent efficiency for separating polar and hydrophilic molecules, including peptides, glycopeptides, and small proteins. The 2.1 x 50 mm format delivers rapid analysis and optimal resolution, reducing run times and solvent consumption in demanding analytical workflows. Withstanding pressures up to 1200 bar, the column is ideally suited for use with UHPLC and advanced LC-MS systems, supporting sensitive and reproducible results for proteomics, biopharmaceutical characterization, and metabolomics research. Compatibility extends to the Agilent 1290 Infinity LC series and most modern UHPLC platforms. The robust bonded phase provides superior retention and peak shape for a broad range of analytes under hydrophilic interaction conditions. Researchers benefit from enhanced data quality in high-throughput laboratories, biomarker discovery, and quality control applications. Integration with ZORBAX family columns and recommended guard columns maximizes column lifetime and performance, ensuring reliable operation over extended use. This column is a preferred choice for laboratories seeking precise, reproducible separations for hydrophilic and large biomolecular samples in both research and regulated environments.