SKU: 176002893
XSelect CSH Fluoro-Phenyl Column, 130Å, 2.5 µm, 2.1 mm X 150 mm, 3/pk

XSelect CSH Fluoro-Phenyl Column | 176002893


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Product Description

Designed to maximize selectivity differences, the XSelect CSH Fluoro-Phenyl column provides you with maximum method development freedom, especially when using low pH mobile phases. The non-encapped sorbent provides you with enhanced retention of acidic compounds. Packed in ultra-low dispersion hardware, 2.5 µm eXtended Performance [XP] columns enable exceptional separation performance, robustness and throughput for HPLC assays while enabling a seamless transition path toward UPLC adoption.

Specifications

  • Chemistry

    PFP/Fluoro-Phenyl

  • Separation Mode

    Reversed Phase

  • Particle Substrate

    Hybrid

  • pH Range Min

    1 pH

  • pH Range Max

    8 pH

  • Maximum Pressure

    18000 psi (1240 Bar)

  • Endcapped

    No

  • Bonding Technology

    Fluoro-Phenyl

  • Silanol Activity

    Low

  • Particle Shape

    Spherical

  • Particle Size

    2.5 µm

  • Endfitting Type

    Parker-style

  • Pore Size

    130 Å

  • Format

    Column

  • Surface Area

    185

  • System

    UPLC, UHPLC

  • Particle Technology

    CSH

  • USP Classification

    L43

  • Inner Diameter

    2.1 mm

  • Length

    150 mm

  • Carbon Load

    10 %

  • eCord

    Yes

  • UNSPSC

    41115709

  • Brand

    XSelect

  • Product Type

    Columns

  • Units per Package

    3 pk

Product Support

Documents

Documents



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XSelect CSH Fluoro-Phenyl Column, 130Å, 2.5 µm, 2.1 mm X 150 mm, 3/pk

The XSelect CSH Fluoro-Phenyl column is designed to optimize selectivity differences, giving you maximal method development freedom, especially when utilizing low pH mobile phases. The non-end-capped sorbent improves the retention of acidic chemicals. 2.5 µm eXtended Performance [XP] columns with ultra-low dispersion technology provide superior separation performance, resilience, and throughput for HPLC experiments while offering a smooth transition route toward UPLC adoption.

With two key particle technologies, HSS and CSH, XSelect HPLC Columns are designed to give the broadest range of chromatographic separations. Although XP 2.5 µm Columns outperform other typical 3.5-5 µm HPLC Columns in terms of productivity on traditional HPLC systems, a low-dispersion UPLC System is required to completely maximize the performance of any column technology, even for conventional HPLC separations.

The XSelect CSH Fluoro-Phenyl Column can readily be used to execute experiments with a pH range of 1 to 8, as well as up to 18,000 psi of maximum pressure (or 1240 Bar). The XSelect CSH Fluoro-Phenyl Column can also handle a 10% carbon load.

Our website sells a variety of goods that are compatible with the XSelect CSH Fluoro-Phenyl Column, such as guards, vials, and elution plates. The website allows you to instantly shop for lab equipment as well as contact us with any questions. You can express your questions and concerns to a member of our staff in one of our many offices across the world.

You may also be interested in nanoEase M/Z Symmetry C18 Trap Column, 100, 5 µm, 300 m X 25 mm, 1/pk; nanoEaseTM M/Z columns are designed for optimal performance in nano- to micro-scale liquid chromatographic separation, providing the highest possible sensitivity, resolution, and reproducibility for biomarker discovery and protein identification and characterization. The 300m ID columns are constructed using an extremely low dispersion column design and provide the same ease of usage as more traditional columns. They endure 15kpsi working pressure and handle pressure changes during injection exceedingly well, as do all M/Z columns, and hence provide a superior lifetime. It is critical to ensure adequate connections are made to reduce peak tailing and poor efficiency in order to achieve optimal performance.

What Is The Importance Of High Resolution In Chromatography?

Because resolution is a function of peak width and retention time, both of which are inherent aspects of the chromatographic process, it can be utilized to optimize separations. The higher the resolution obtained, the better and more accurate the results can be assessed.