SKU: 186002491
Oasis WAX 1 cc Vac Cartridge, 30 mg Sorbent per Cartridge, 60 µm, 100/pk

Oasis WAX 1 cc Vac Cartridge | 186002491


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Product Description

The 1 cc Oasis WAX cartridges contain the Oasis WAX sorbent, which is a polymeric reversed-phase, weak anion exchange mixed-mode sorbent that has been optimized for fast, simple, and highly selective sample preparation of strong acidic compounds. Since the Oasis WAX sorbent is water wettable, it maintains its capability for higher retention and excellent recoveries even if the sorbent runs dry, which means there is no need to take extraordinary steps to keep the sorbent beds from drying out during the critical steps prior to sample loading. The 60 µm particle size is recommended when working with viscous samples. These syringe-barrel-type cartridges are designed for use with vacuum manifolds and automated SPE instruments.

Specifications

  • UNSPSC

    41115712

  • Brand

    Oasis

  • Product Type

    Solid Phase Extraction

  • Units per Package

    100 pk

  • Chemistry

    WAX

  • Endcapped

    No

  • Format

    Vac Cartridge

  • Ion Exchange Capacity

    0.6 meq/gram

  • Mass Spec Compatibility

    Yes

  • Mode

    Mixed mode

  • Particle Size

    60 µm

  • Pore Size

    80 Å

  • Sorbent Substrate

    Copolymer

  • Sorbent Weight

    30 mg

  • Water Wettable

    Yes

  • pH Range Min

    0 pH

  • pH Range Max

    14 pH

  • Material

    Polypropylene

  • Barrel Size

    1 cc

Product Support

Documents

Documents



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Oasis WAX 1 cc Vac Cartridge, 30 mg Sorbent per Cartridge, 60 µm, 100/pk

The Oasis WAX sorbent, which is a polymeric reversed-phase, weak anion exchange mixed-mode sorbent developed for fast, simple, and highly selective sample preparation of strong acidic chemicals, is contained in the 1 cc Oasis WAX cartridges. Because the Oasis WAX sorbent is water wettable, it retains its ability for higher retention and excellent recoveries even if the sorbent runs dry, eliminating the need for extra precautions to keep the sorbent beds from drying out during the key steps prior to sample loading.

The Oasis WAX Cartridge employs the Oasis WAX sorbent, a polymeric weak anion-exchange mixed-mode reversed-phase sorbent specially designed for quick, easy, and highly selective sample preparation of strong acidic compounds. This polymeric mixed-mode sorbent has a pH operating range of 0 to 14 and is water-wettable. The lab equipment is exceedingly clean to ensure that no contamination influences your analysis or sample preparation.

The Oasis WAX Cartridge is water wettable due to the use of the Oasis WAX sorbent and retains its potential to deliver better recovery and higher retention even when the sorbent runs out. This means that particular precautions aren't needed to keep the sorbent beds from drying out during the critical operations before sample loading. When working with viscous substances, the particle size of 60 µm is recommended. These cartridges with syringe barrels are intended for use with vacuum manifolds and automated SPE devices.

The Oasis WAX sorbent incorporates all of the advantages of the Oasis HLB sorbent, which provides strong and highly selective SPE methods for identifying, confirming, and quantifying extremely acidic compounds in biological fluids.

Shop for lab equipment to supplement your existing lab equipment or to refresh your supply as needed. You should also look at the LCMS Certified Clear Glass 12 x 32 mm Screw Neck Vial, with Cap and Preslit PTFE/Silicone Septum, 2 mL Volume, 100/pk; All Waters. The manufacturing methods and handling procedures for LCMS Certified vials are strictly supervised. They are mass spectrometer tested and come with a certificate of analysis displaying the reference and vial scan for the production batch.

What Effect Does Temperature Have On Liquid Chromatography?

Chromatography is a sequence of equilibrium reactions in which analytes dissolve in the mobile phase or are adsorbed to the stationary phase of the column. The exchange of analytes between the mobile phase and the stationary phase accelerates as the temperature rises. As a result, rising temperatures hasten the analysis.