SKU: 186004689
ACQUITY UPLC HSS C18 SB Column, 100Å, 1.8 µm, 3 mm X 150 mm, 1/pk

ACQUITY UPLC HSS C18 SB Column | 186004689


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Product Description

ACQUITY UPLC HSS C18 SB columns are used for low pH separations that contain complex mixtures of basic and non-basic compounds. ACQUITY HSS C18 SB columns give you alternative analyte selectivity compared to most modern, high coverage, fully endcapped C18 stationary phases. ACQUITY HSS C18 SB columns are fully scalable and transferable to HPLC separations.

Specifications

  • Chemistry

    C18

  • Separation Mode

    Reversed Phase

  • Particle Substrate

    Silica

  • pH Range Min

    2 pH

  • pH Range Max

    8 pH

  • Temperature Limits

    45 C

  • Maximum Pressure

    18000 psi (1240 Bar)

  • Endcapped

    No

  • Bonding Technology

    C18 SB

  • Silanol Activity

    Medium

  • Particle Shape

    Spherical

  • Particle Size

    1.8 µm

  • Endfitting Type

    Parker-style

  • Pore Size

    100 Å

  • Format

    Column

  • Surface Area

    230

  • System

    UPLC, UHPLC

  • Particle Technology

    HSS

  • USP Classification

    L1

  • Inner Diameter

    3 mm

  • Length

    150 mm

  • Carbon Load

    8.5 %

  • eCord

    Yes

  • UNSPSC

    41115709

  • Brand

    ACQUITY UPLC

  • Product Type

    Columns

  • Units per Package

    1 pk

Product Support

Documents

Documents



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ACQUITY UPLC HSS C18 SB Column, 100Å, 1.8 µm, 3 mm X 150 mm, 1/pk

For low pH separations containing complicated combinations of basic and non-basic chemicals, ACQUITY UPLC HSS C18 SB columns are employed. Compared to the majority of contemporary, high coverage, completely end-capped C18 stationary phases, ACQUITY HSS C18 SB columns offer alternate analyte selectivity. Fully scalable and transferrable to HPLC separations are the ACQUITY HSS C18 SB columns.

Reduce the likelihood of technique variation brought on by inconsistent batches of chromatographic medium or columns. This is why you can count on the ACQUITY UPLC HSS C18 SB Column to offer reliable results year after year because it was designed to produce predictable and reproducible results.

Utilize the distinct non-end-capped, low-coverage silica-based C18 chemistry of the ACQUITY UPLC HSS C18 SB Column to achieve alternative selectivity for compounds affected by silanophilic interactions. The lab apparatus has a specific increased silanol activity as a result of secondary interactions with leftover silanols, which increases the retention of fundamental chemicals. This happens as ionic repulsion, and poor ligand density reduces non-basic analyte retention. The unique mix of retention properties found in the ACQUITY UPLC HSS C18 SB Column makes it a powerful method development tool capable of delivering modifications in Selectivity for Bases (SB) while providing excellent peak shape.

The packaging materials for the ACQUITY UPLC HSS C18 SB Column were created exclusively for the ACQUITY UPLC System. Additionally, they are made with ultra-pure reagents in a facility that is ISO 9001 and cGMP certified. To ensure exceptional, repeatable performance, each batch of the packing material is chromatographically tested with acidic, basic, and neutral analytes, and the results are held to narrow specification ranges.

To shop for lab equipment, view all products that are compatible with the present selection, or discover different iterations of the same item, browse our website.

We recommend reviewing ACQUITY UPLC HSS C18 SB VanGuard Pre-column, 100Å, 1.8 µm, 2.1 mm X 5 mm, 3/pk; For low pH separations containing complicated combinations of basic and non-basic chemicals, ACQUITY UPLC HSS C18 SB columns are employed. Compared to the majority of contemporary, high-coverage, completely end-capped C18 stationary phases, ACQUITY HSS C18 SB columns offer alternate analyte selectivity. Fully scalable and transferrable to HPLC separations are the ACQUITY HSS C18 SB columns. By immediately connecting to the ACQUITY UPLC column's intake, the VanGuard pre-column decreases the volume of additional columns and reduces leaking by doing away with superfluous connections.

Why Do Cations Only Appear in Data from Mass Spectrometry?

Only ions can be recognized when measuring the mass of charged particles using mass spectrometry since neutral molecules are invisible.