SKU: 186003517
Oasis MAX Plus Short Cartridge, 225 mg Sorbent per Cartridge, 60 µm, 50/pk

Oasis MAX Plus Short Cartridge | 186003517


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Product Description

Oasis MAX Plus Short cartridges contain the Oasis MAX, which is a novel, mixed-mode polymeric sorbent that has been optimized to achieve higher selectivity and sensitivity for extracting acidic compounds with anion-exchange groups. Since the Oasis MAX 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 versatile Plus Short cartridges can attach easily to pumps and syringes for reliable, positive-pressure flow to speed up the sample processing time. They can also be fitted with removable reservoirs and used on vacuum-assisted flow devices and certain automated systems.

Specifications

  • UNSPSC

    41115712

  • Brand

    Oasis

  • Product Type

    Solid Phase Extraction

  • Units per Package

    50 pk

  • Chemistry

    MAX

  • Endcapped

    No

  • Format

    Plus Short Cartridge

  • Ion Exchange Capacity

    0.2 meq/gram

  • Mass Spec Compatibility

    Yes

  • Mode

    Mixed mode

  • Particle Size

    60 µm

  • Pore Size

    80 Å

  • Sorbent Substrate

    Copolymer

  • Sorbent Weight

    225 mg

  • Water Wettable

    Yes

  • pH Range Min

    0 pH

  • pH Range Max

    14 pH

  • Material

    Polypropylene

Product Support

Documents

Documents



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Oasis MAX Plus Short Cartridge, 225 mg Sorbent per Cartridge, 60 µm, 50/pk

Your sample preparation needs will be satisfied by the ground-breaking Waters Oasis MAX Plus Short Cartridge. The lab equipment uses a reversed-phase sorbent called Oasis MAX (Mixed-mode Anion eXchange). A new mixed-mode polymeric sorbent called Oasis MAX has been created for more sensitive and selective extraction of acidic compounds containing anion-exchange groups. The sorbent is also water wettable, which means that even if it runs out of water, it will still be able to offer better retention and recovery. By doing this, it is no longer necessary to take extra care to prevent the sorbent beds from drying out during the crucial procedures prior to sample loading. When working with viscous substances, the 60 µm particle size is advised.

Both fractions of complicated samples can have analytes extracted using the Oasis MAX Plus Short Cartridge. This implies that neutral and basic/neutral substances can be distinguished using selectivity and durability using the same laboratory equipment. In addition to this, the Waters Oasis MAX Plus Short Cartridge has the ability to efficiently remove phospholipids and lysophospholipids, which are important causes of ion suppression in LC/MS/MS analysis.

To guarantee that you receive genuine Waters lab equipment at the best available price, we strongly suggest you buy lab equipment directly from our website. Information on our most recent and upcoming technological advancements can also be found in the Waters catalog and website.

Waters advises you to look into the Waters XBridge BEH C18 Method Validation Kit, 130Å, 3.5 µm, 2.1 mm X 100 mm, 3/pk. Regardless of whether you are working on a cutting-edge LC/MS assay or a quality control procedure, it has been created to help you make the most of your time. The analytical column's improved pH stability, which results in a longer column lifespan, makes this possible. Assay robustness is additionally increased, and column dependability is enhanced. You can attain unparalleled peak form and capacity thanks to its potential to maximize particle efficiency.

What Kinds Of Samples Are Suitable For Lc Hplc Analysis?

Nucleotides, peptides, steroids, hormones, dyes, fatty acids, and alcohols are examples of common LC/MS materials. As a result, pharmacokinetics, proteomics, metabolomics, lipidomics, and drug development all favor the usage of LC/MS.