UPLC Column 2.1 x 150 mm

SKU: 186005298
ACQUITY UPLC CSH C18 Column, 130Å, 1.7 µm, 2.1 mm X 150 mm, 1/pk

Acquity Uplc Csh C18 Column | 186005298


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Product Description

ACQUITY CSH C18 columns were designed to provide alternate selectivity compared to other reversed-phase UPLC columns. These ultra-efficient columns overcome peak shape asymmetry and poor loading capacity for basic compounds, column bleed, and rapid mobile-phase re-equilibration.

Specifications

  • Chemistry

    C18

  • Separation Mode

    Reversed Phase

  • Particle Substrate

    Hybrid

  • pH Range Min

    1 pH

  • pH Range Max

    11 pH

  • Maximum Pressure

    18000 psi (1240 Bar)

  • Endcapped

    Yes

  • Silanol Activity

    Low

  • Particle Shape

    Spherical

  • Particle Size

    1.7 µm

  • Endfitting Type

    Parker-style

  • Pore Size

    130 Å

  • Format

    Column

  • Surface Area

    185

  • System

    UHPLC, UPLC

  • Particle Technology

    CSH

  • USP Classification

    L1

  • Inner Diameter

    2.1 mm

  • Length

    150 mm

  • Carbon Load

    15 %

  • eCord

    Yes

  • UNSPSC

    41115709

  • Brand

    ACQUITY UPLC

  • Product Type

    Columns

  • Units per Package

    1 pk

Product Support

Documents

Documents



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FAQs about ACQUITY UPLC CSH C18 Column

What distinguishes the ACQUITY UPLC CSH C18 Column in terms of chromatographic performance?
The ACQUITY UPLC CSH C18 Column features charged surface hybrid technology that enhances peak shape and resolution for basic compounds, offering excellent chromatographic performance even at low pH levels.

Can the ACQUITY UPLC CSH C18 Column be used for the separation of a wide range of compounds?
Yes, the ACQUITY UPLC CSH C18 Column is versatile and can be used to separate a broad spectrum of compounds, from small molecules to larger biomolecules, due to its robust design and wide pH stability.

How does the particle design of the ACQUITY UPLC CSH C18 Column contribute to UPLC efficiency?
The particle design of the ACQUITY UPLC CSH C18 Column, with its small particle size, allows for high-resolution, high-efficiency chromatography, which is ideal for UPLC applications requiring fast analysis times.

What are the benefits of the ACQUITY UPLC CSH C18 Column in terms of method development?
The ACQUITY UPLC CSH C18 Column's wide pH range and compatibility with a variety of mobile phases make it a valuable tool for method development, offering flexibility to optimize separation conditions for different analytes.

Is the ACQUITY UPLC CSH C18 Column compatible with direct injection of biological samples?
The ACQUITY UPLC CSH C18 Column is designed to handle complex matrices, including direct injection of biological samples, due to its robust surface technology which provides resistance to sample-matrix effects.

What pH range and temperature are recommended for use with the ACQUITY CSH columns?

Though designed for a greater lifetime, the column’s lifespan will vary and depend on factors such as the type and concentration of buffer used, and the operating temperature. The use of phosphate buffer at pH 8, combined with higher temperatures will diminish the column’s life. As a general indication, the CSH columns are suited for the analysis of materials with a pH range between 1 and 11. Up to 80° Celsius temperature is recommended for operating ACQUITY CSH columns in order to enhance selectivity, increase mass transfer rates and lower solvent viscosity. However, when operating at higher pH, lower temperature (45 degrees celsius) is recommended to ensure a longer column lifetime.

What is BEH Technology?

An instrumental catalyst in UPLC technology, the 1.7 µm BEH (Ethylene Bridged Hybrid) particle serves as a pivotal component, offering diverse pore sizes and bonded phases that facilitate both reversed-phase and hydrophilic interaction chromatography. This cutting-edge technology finds application across a broad spectrum, encompassing the analysis of small molecules as well as large molecule biopharmaceuticals. Hybrid particle technology has intrinsic chemical stability, allowing for a wider usable pH range [pH 1-12]. This also enables a versatile, robust separation technology for method development. The BEH particle technology is available in a variety of HPLC particle sizes [2.5, 3.5, 5, and 10 µm] which allows for a seamless transition between HPLC and UPLC technology platforms.