SKU: 186005792
ACQUITY UPLC Peptide BEH C18 Column, 130Å, 1.7 µm, 2.1 mm X 300 mm, 1K - 30K, 1/pk

ACQUITY UPLC Peptide BEH C18 Column | 186005792


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Product Description

The ACQUITY BEH130 C18 Peptide Separation Technology (PST) columns have been specially optimized and QC tested for peptide separations. The small-pore (130Å) trifunctionally bonded BEH particle offers the widest usable pH range, superior low pH stability, and ultra-low column bleed to assay samples for proteomics, protein characterization, and peptide synthesis.

Specifications

  • Chemistry

    C18

  • Separation Mode

    Reversed Phase

  • Particle Substrate

    Hybrid

  • pH Range Min

    1 pH

  • pH Range Max

    12 pH

  • Endcapped

    Yes

  • Silanol Activity

    Low

  • Molecular Weight Range Min

    1000

  • Molecular Weight Range Max

    30000

  • Particle Shape

    Spherical

  • Particle Size

    1.7 µm

  • Endfitting Type

    Parker-style

  • Pore Size

    130 Å

  • QC Tested

    Peptide

  • Format

    Column

  • Surface Area

    185

  • System

    UHPLC, UPLC

  • Particle Technology

    BEH

  • USP Classification

    L1

  • Inner Diameter

    2.1 mm

  • Length

    300 mm

  • Carbon Load

    18 %

  • UNSPSC

    41115709

  • Application

    Peptide

  • Brand

    ACQUITY UPLC

  • Product Type

    Columns

  • Units per Package

    1 pk

Product Support

Documents

Documents



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ACQUITY UPLC Peptide BEH C18 Column, 130Å, 1.7 µm, 2.1 mm X 300 mm, 1K - 30K, 1/pk

Using the ACQUITY UPLC Peptide BEH C18 Columns, you can obtain successful separations for a wide range of peptides. Whether you need to attain separate large and small, hydrophobic and hydrophilic, or acidic and basic peptides, the ACQUITY UPLC Peptide BEH C18 Column would make an excellent addition to your lab equipment.

The ACQUITY UPLC Peptide BEH C18 Column is part of the Peptide Separation Technology column series, which relies on synthetic particles that ensure the best quality and consistent performance. This technology, combined with chemistry, provides unmatched performance in separating complex protein digests. These columns are specifically QC-tested with a peptide digest for assured peptide mapping performance. You can rely on the stability of the particle structure through pH 1 to 12, along with the consistency of batch-to-batch protein digest separation and peptide synthesis. The column offers quite a large range for molecular weight, ranging from 1000 to 30000.

The ACQUITY UPLC Peptide BEH C18 Columns are ideal for obtaining peptide separations as they give narrow, symmetrical peaks and reflect improved chromatography of peptides for best resolution. The increased sensitivity along with higher resolution offered with the ACQUITY UPLC Peptide BEH C18 Column would enable you to see modified peptides at lower levels because they will be more easily separated from unmodified peptides. As the Peptide Separation technology on which the ACQUITY UPLC Peptide BEH C18 Column is based yields sharper and symmetrical peaks to simplify analyses, it would be ideal to use the ACQUITY UPLC Peptide BEH C18 Column for running analysis on glycoproteins and glycopeptides as well.

Find more products such as the one listed here to meet any chromatographic needs that you may have. Learn about our products by ordering our catalog or simply by looking through our website, which also enables you to shop for lab equipment.

You might also be interested in the ACQUITY UPLC HSS T3 Column with which you will easily be able to transfer methods while improving productivity while also maintaining or increasing the resolution between the components. Waters has designed the ACQUITY UPLC HSS T3 Column to enable a single chromatographic method to be utilized to analyze a wide range of different formulation compositions.

What Is The Maximum Pressure The ACQUITY BEH Columns Can Operate Up To?

The ACQUITY BEH columns can tolerate operating pressures up to 18000 psi. However, you should note that working at the extremes of pressures, pH, and/or temperatures will result in shorter column lifetimes.