Product Description
Bond Elut SAX, 96 square-well plate, 2 mL, 25 mg, 1/pk. A strong anion exchange sorbent ideally suited for the extraction of compounds, such as carboxylic acids, which may not retain effectively on weak anion exchange sorbents.
Specifications:
Bed Mass: 25 mg
Brand: Bond Elut
Frit Material: Polyethylene
Frit Pore Size: 20
Loading (mg): 25
Number of Wells: 96
Particle Size: 40 µm
Phase: SAX
Primary Extraction Mechanism: Strong Anion Exchange
SPE Category: Anion Exchange
SPE Format: 96 Square-Well Plate
Skirt: Full
Sorbent Material: Silica
Sterile: No
Typical Matrices: Aqueous SamplesBiological FluidsBuffered Organics
UNSPSC Code: 41115712
Volume: 2 mL
Well Plate Material: Polypropylene
Well Shape: Square
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This 96 square-well plate is pre-packed with 25 mg of strong anion exchange (SAX) sorbent per well and offers a 2 mL capacity, providing efficient and reproducible sample processing for high-throughput laboratories. Designed for solid phase extraction (SPE) applications, it enables the selective retention and elution of anionic analytes from complex biological, environmental, or food samples. Typical uses include sample clean-up for chromatographic or mass spectrometry analysis, desalting of nucleic acids, or concentration of acidic compounds prior to LC, LCMS, or GC workflows.
Optimized for automation, this plate is compatible with most liquid handling workstations and vacuum manifolds, supporting streamlined sample preparation in 96-well format. The uniformity and high-purity SAX sorbent ensure low backpressure, consistent flow rates, and reliable recovery across all wells, making it well suited for both qualitative and quantitative assays. Suitable related products include SPE vacuum manifolds, positive pressure processors, and accessory sealing mats. The plate integrates seamlessly into workflows utilizing Agilent LCMS and GCMS systems, contributing to lower matrix effects and improved analyte detection sensitivity. This solution supports robust throughput and reproducible purification required for modern analytical and research laboratories.
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Collaboration
Tony Tang
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