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  • 3M™ Empore™ Discs 6065, 96 Well Filter, 12 Per Case
  • 3M™ Empore™ Discs 6065, 96 Well Filter, 12 Per Case

    3M ID DI100010427UPC 50707387563238
    • Efficient SPE device with Sorbent particles tightly held together within an inert matrix of polytetrafluoroethylene (PTFE) membrane
    • Sorbent particles tightly enmeshed in PTFE that eliminates particle fines that plug frits
    • Dense particle packing (no void space) & uniform particle distribution results in high separation efficiency
    • Fits standard 96-well plate format
     More...
    Specifications
    Attribute Name
    Value
    Applications
    Solid Phase Extraction
    Brand
    Empore™
    Filter Type
    Standard Well Plate
    Formulation
    Filter Plate
    Industries
    Life Sciences
    Product Details
    • Efficient SPE device with Sorbent particles tightly held together within an inert matrix of polytetrafluoroethylene (PTFE) membrane
    • Sorbent particles tightly enmeshed in PTFE that eliminates particle fines that plug frits
    • Dense particle packing (no void space) & uniform particle distribution results in high separation efficiency
    • Fits standard 96-well plate format
    • Suitable for sample preparation applications for bio-analytical and metabolite analysis protocols
    • Compatible with vacuum manifold and well plate covers

    3M™ Empore™ Well Plates are designed for SPE sample preparation of bioanalytical samples prior to high through-put LC-MS analytical methods. Available with C8, C18, MPC, 3M™ Empore well-plates offer an efficient way to purify variety of bio-analytical samples and allows for robust analytical method development.

    3M™ Empore™ Well Plates are designed for solid phase extraction of analytes from 96 samples. Available with C8, C18, MPC (Mixed Phase Cation - with hydrophobic (C8) and strong cation exchange benzene sulfonic acid) and UR (Universal Resin plate offers both polar, hydrophilic, and nonpolar, hydrophobic, functionalities), 3M™ Empore™ Well Plates offer an efficient way to purify variety of bio-analytical samples and allows for robust analytical method development. This format is also ideal for examining multiple parameters within a single plate and can reduce the time required for method optimization. The small bed mass of sorbent in 3M™ Empore™ Well Plates allows for the use of smaller solvent volumes than with traditional packed bed SPE products. Good target analyate recoveries, consistent performance, and clean extracts are the major advantages of the plates.

    3M™ Empore™ Well Plates provide an effective and efficient means of high throughput solid phase extraction (SPE) by allowing technicians to process 96 samples in a standard 8x12 plate format. This productive format is compatible with standard microtiter liquid handling technologies and injection systems. Parallel sample processing allows 96 samples to be extracted in approximately one hour. Each well of the plate contains the Empore particle-loaded membrane for efficient sample extraction followed by elution in as little as 100μL with mobile phase or mobile phase compatible solutions which can be injected directly onto chromatographic systems. 3M™ Empore™ Well Plates are available in a standard well, 1.2 mL sample volume size.

    The plates are available with the following sorbent phases: URP (Universal Resin), C18, C8, MPC (Mixed Phase Cation).  The C8 and C18 bonded silica sorbents combine good retention capacity with high recoveries.  The MPC (Mixed Phase Cation) bonded silica plates contain both hydrophobic (C8) and strong cation exchange (benzene sulfonic acid) functionalities. This combination of functionalities offers the potential to perform selective extractions of amine containing (basic) analytes or the ability to extract acidic and neutral analytes separately from basic analytes. The Universal Resin (UR) sorbent is a terpolymer based on styrenedivinylbenzene and designed to provide good retention of a wide range of analytes. A single reversed phase method can often be used to isolate and concentrate a variety of acidic, basic and neutral compounds which may reduce method development time.

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