BRAND / VENDOR: Agilent

Agilent, PL1912-3501, PLRP-S 300Å, 2.1 x 150 mm, 5 µm

CATALOG NUMBER: PL1912-3501

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Product Description

PLRP-S 300Å, 2.1 x 150 mm, 5 µm. Reversed-phase HPLC column with fully porous PS/DVB particle support stable at elevated temperatures and a wide pH range(1-14). Available in range of particle and pore sizes for targeted applications

Specifications:
Brand: PLRP-S
Hardware: SS
Inner Diameter (ID): 2.1 mm
LC Platform: Stainless Steel
Length: 150 mm
Maximum Temperature: 200 °C
Part Number Application Domain: Biopharma
Part Number Application: Intact & Subunit AnalysisMonoclonal Antibodies (mABs)PeptidesProteins
Particle Size: 5 µm
Particle Type: Fully Porous
Phase: DVB
Pore Size: 300 Å
Pressure Rating: 207 bar
Separation Mode: Reversed Phase
Shipping Solvent: Acetonitrile/Water
Technique: LCLC & LC/MS
UNSPSC Code: 41115711
pH Range: 1-14

**********The following product description is generated by AI and is for reference only. If you have any questions, please contact customer service.**********
This high-performance reversed-phase chromatography column offers a pore size of 300 angstroms, a particle size of 5 micrometers, and dimensions of 2.1 by 150 millimeters, making it ideal for the separation and analysis of large biomolecules such as proteins, peptides, and oligonucleotides. Its polymeric stationary phase provides outstanding chemical and pH stability, enabling robust performance across a wide range of mobile phases and gradient conditions. This column is especially suitable for laboratories conducting protein mapping, peptide purity analysis, or biomolecule characterization, as it ensures high resolution, batch-to-batch reproducibility, and minimal analyte adsorption. The design supports efficient flow rates and optimal binding capacity, making it compatible with Agilent LC systems including Infinity and 1100, 1200, and 1260 series, as well as other widely used HPLC platforms. It integrates seamlessly with related Agilent sample preparation tools and detection technologies, supporting workflows in pharmaceutical, biotechnology, and academic research. Its polymer-based construction minimizes column bleed and maximizes longevity for routine and high-throughput applications. Researchers can rely on this column for reproducible, high-quality separations of challenging biomolecular samples, supporting critical workflows in drug development, quality control, and proteomic studies.

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