Product Description
Bond Elut PH, 96 round-well plate, 1 mL, 100 mg, 1/pk. A nonpolar bonded silica material with added selectivity compared to other nonpolar sorbents and enhanced retention of planar, conjugated organic molecules.
Specifications:
Bed Mass: 100 mg
Brand: Bond Elut
Frit Material: Polyethylene
Frit Pore Size: 20
Loading (mg): 100
Number of Wells: 96
Particle Size: 40 µm
Phase: PH
SPE Category: Non-polar
SPE Format: 96 Round-Well Plate
Skirt: Half
Sorbent Material: Silica
Sterile: No
UNSPSC Code: 41115712
Volume: 1 mL
Well Plate Material: Polypropylene
Well Shape: Round
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The Bond Elut PH 96 round-well plate offers efficient and reliable solid-phase extraction for high-throughput sample processing in a 1 mL, 100 mg format. Utilizing a phenyl sorbent, this plate is particularly suitable for the extraction and clean-up of analytes with aromatic or nonpolar characteristics from complex biological or environmental matrices. Common usage scenarios include pharmaceutical, environmental, and food safety laboratories requiring the simultaneous processing of multiple samples.
Designed for automation, the 96 well format seamlessly integrates with most liquid handling robots, vacuum manifolds, and positive pressure manifolds, optimizing workflow in high-volume settings. Its robust construction supports consistent performance and reproducible results, making it ideal for both qualitative and quantitative analytical procedures.
The Bond Elut PH plate is compatible with widely used sample preparation systems, such as Agilent’s vacuum manifold devices and automated SPE platforms, facilitating efficient sample throughput. It is also suitable for LC-MS or GC-MS based analyses, ensuring sample purity and minimizing matrix interferences. For comprehensive workflows, Bond Elut PH plates can be used alongside other Bond Elut formats or sorbent chemistries to address a variety of extraction requirements. This versatility makes it a dependable solution for streamlining laboratory sample preparation processes.
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Collaboration
Tony Tang
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