SKU: 186000375
Oasis MAX 96-well Plate, 10 mg Sorbent per Well, 30 µm, 1/pk

Oasis MAX 96 well Plate 10 mg Sorbent per Well | 30 µm | 1/pk | 186000375


Streamline Purchasing with Customized Quotes

Streamline Purchasing with Customized Quotes

Shop on Waters.com and add items to your cart

Navigate to the Shopping Cart

Select Request a Quote to get your quote instantly


Product Description

The Oasis MAX 96-well plate contains the Oasis MAX sorbent, 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. The unique balance of hydrophobicity and water-wettability of the Oasis MAX sorbent means you will never have to worry about poor results if individual wells of the 96-well plate dry out during the critical steps prior to sample loading. The Oasis MAX 96-well plate is designed to be used on many manifold configurations and most robotic liquid handling systems.

Specifications

  • UNSPSC

    41115712

  • Brand

    Oasis

  • Product Type

    Solid Phase Extraction

  • Units per Package

    1 pk

  • Chemistry

    MAX

  • Endcapped

    No

  • Format

    96-well Plate

  • Ion Exchange Capacity

    0.2 meq/gram

  • Mass Spec Compatibility

    Yes

  • Mode

    Mixed mode

  • Particle Size

    30 µm

  • Pore Size

    80 Å

  • Sorbent Substrate

    Copolymer

  • Sorbent Weight

    10 mg

  • Water Wettable

    Yes

  • pH Range Min

    0 pH

  • pH Range Max

    14 pH

  • Material

    Polypropylene

  • Number of Wells

    96

Product Support

Documents

Documents



What do you want to do?

What do you want to do?

Related Products

Back To Top Back To Top

Oasis MAX 96-well Plate, 10 mg Sorbent per Well, 30 µm, 1/pk

With demand increasing for sample preparation and scientists globally facing the same challenges, Waters developed a specially designed polymeric sorbent that performs optimally for reversed-phase SPE. This copolymer, Oasis HLB, has a unique hydrophilic-lipophilic balance making it unlike traditional SPE sorbents. Based on this innovative technology, Oasis has become a family of sorbents with five SPE chemistries, including Oasis MCX for basic compounds and a range of lab equipment.

Designed to overcome the limitations of traditional silica-based mixed-mode SPE sorbents, Oasis MCX is a strong mixed-mode cation exchange, water-wettable, polymeric sorbent. It is made reproducibly using Water’s novel and well-controlled production process, delivering Oasis MCX with 1.0 meq/g of sulfonic-acid-ion-exchange capacity. Oasis MCX sorbent offers dual modes of retention (both ion exchange and reversed-phase) on a single, clean, stable, high-surface-area, organic co-polymer that is stable from pH 0 to 14.

In addition to the pH stability typical of DVB polymers, Oasis MCX offers a greater binding capacity than silica-based mixed-mode SPE sorbents. The ability to fully manipulate pH (0 to 14) during the development, optimization, and use of SPE methods on mixed-mode sorbents enables not only fast and straightforward method development, but also ensures rugged and robust procedures. This is done without analyte breakthrough or loss of recovery due to dissolving silica particles at high pH or cleaving bonded phase at low pH.

Oasis MCX sorbent is delivered in a 6 cc Vac Cartridge made from polypropylene. The cartridges are syringe-barrel style and are delivered in packages of 30. Oasis MCX cc Vac Cartridges can be used with multiple methods, including the BPA Method Kit.

What Are The Dimensions Of The Oasis MAX 96-Well Plate?

Oasis 96-Well plates have the following dimensions: a length of 5.030 inches, a width of 3.365 inches, and a height of 2.015 inches. All Waters Oasis 96-well plates meet the ANSI (American National Standards Institute) guidelines for similar microplates. Each order contains one plate with 96 individual wells, with each well holding 10 mg of sorbent. These specifications allow for the plate to be used on many manifold configurations and most robotic liquid handling systems.