SKU: 186002679
SunFire Silica C18 Method Validation Kit, 100Å, 5 µm, 4.6 mm X 150 mm, 3/pk

SunFire Silica C18 Method Validation Kit | 186002679


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Product Description

This kit consists of three Sunfire C18 columns packed with three different batches of sorbent.

Specifications

  • Chemistry

    C18

  • Separation Mode

    Reversed Phase

  • Particle Substrate

    Silica

  • pH Range Min

    2 pH

  • pH Range Max

    8 pH

  • Maximum Pressure

    6000 psi (415 Bar)

  • Endcapped

    Yes

  • Silanol Activity

    Low

  • Particle Shape

    Spherical

  • Particle Size

    5 µm

  • Endfitting Type

    Waters

  • Pore Size

    100 Å

  • Format

    Method Validation Kit

  • Surface Area

    340

  • System

    HPLC

  • Particle Technology

    Silica

  • USP Classification

    L1

  • Inner Diameter

    4.6 mm

  • Length

    150 mm

  • Carbon Load

    16 %

  • UNSPSC

    41115709

  • Brand

    SunFire

  • Product Type

    Column Kits

  • Units per Package

    3 pk

Product Support

Documents

Documents



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SunFire Silica C18 Method Validation Kit, 100Å, 5 µm, 4.6 mm X 150 mm, 3/pk

Three Sunfire C18 columns are included in this kit, each with three different batches of sorbent: C18 (RP18, ODS, Octadecyl). The SunFire C18 Column has a high resolution, fast response time, and minimal backpressure. It also has exceptional sensitivity, a large peak capacity, and very little bleed, resulting in crisp peaks. The column is versatile enough to be employed in a variety of mass spectrometry applications. The lab equipment is essential for any lab because of these specific characteristics.

For general-purpose technique development at low pH, rely on the SunFire Silica C18 Columns. The SunFire Silica C18 Column's C18 ligand is extremely retentive, especially for basic chemicals. The lab equipment is well suited for purification and impurity profile analyses as a result of this. You also get the best in particle and bonding knowledge with the SunFire Silica C18 Column, resulting in industry-leading chromatographic performance.

You can benefit from the SunFire Silica C18 Column's low pH stability, which extends column lifetime when compared to several classic silica-based HPLC column brands. Moreover, by including the analytical column in your lab, you will get a dependable column that is very efficient and sensitive. This is accomplished by using patented, cutting-edge silica synthesis, bonding, end-capping, and packing methods in the production of the SunFire Silica C18 Column. The innovative bonding and end-capping technologies, together with the column's sorbent, provide higher peak shape performance. At low and intermediate pH ranges, you get symmetrical peaks for improved resolution and quantitation of acidic, neutral, and basic compounds.

The three Sunfire Silica C18 analytical Columns in the Method Validation Kit are manufactured in a dedicated Waters chromatography chemistry manufacturing plant under the tightest cGMP, ISO 9002 conditions. Silica-based and polymeric chromatography materials are manufactured and packed into columns and solid-phase extraction devices at the manufacturing site. This ensures that you obtain the highest-quality lab equipment with batch-to-batch repeatability to offer consistent and trustworthy analysis results. Browse our online store to shop for lab equipment and find a wide choice of products that can be used in conjunction with this column.

You might also be interested in SunFire C18 VanGuard Cartridge, 100Å, 5 µm, 3.9 mm X 5 mm, 3/pk; SunFire C18 VanGuard Cartridges are used to extend analytical column lifetime and performance by removing particulate contamination from the mobile phase stream. This cartridge is optimized to protect all 4.6 mm I.D. SunFire C18 analytical columns containing 5 µm sorbent particles.

What Operating Range Can The SunFire Silica C18 Method Validation Kit Tolerate?

The Analytical columns in the SunFire Silica C18 Method Validation Kit can be used within a pH range of 2 to 8, and up to a maximum pressure of 6000psi (or 415 Bar).