Sep-Pak tC18 96-well Plate, 100 mg Sorbent per Well, 37-55 µm Particle Size, 1/pk

Part Number: 186002321
Manufacturer: Waters
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Delivery Time: approx. 5 days (product only available in Germany)
Excl. 19% taxes, excl. Shipping costs
Packaging unit: 1 pc, Minimum order quantity: 1 pc
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Product Description

The Waters Sep-Pak tC18 SPE cartridge is based on silica-based SPE sorbent and possesses a trifunctional octadecylsilyl phase (other designations: ODS, RP-18, C18). Chromatographically the Waters Sep-Pak tC18 is designed for use in reversed-phase SPE. The trifunctional bonding increases hydrolytic stability compared with classical C18 sorbents. Applications of the Waters Sep-Pak tC18 are aqueous samples, robust RP-SPE, environmental analysis, food samples and routine clean-up.

Features and Benefits

  • Well-established SPE product family
  • Wide range of silica and adsorbent phases
  • Multiple cartridge and sorbent volumes
  • For liquid and gaseous samples
  • Manual and automated sample preparation

Additional Information

Sep-Pak includes classic silica-based SPE phases as well as inorganic adsorbents and derivatized specialty cartridges. C18, tC18, C8, CN, NH2, and Diol cover different polarity and selectivity ranges. Silica, alumina, and Florisil operate primarily through adsorption mechanisms, whereas DNPH-Silica chemically derivatizes and subsequently retains carbonyl compounds. The wide selection of cartridge sizes allows sample volume, sorbent quantity, and required capacity to be tailored to the specific workflow.

Legal Information

Sep-Pak is a registered trademark of Waters Corporation, Milford, Massachusetts, USA.

Product Specification

Brand Sep-Pak
Product Type Well Plates
Particle Size 37-55 µm
Chemistry C18 (RP-18, ODS, Octadecyl)
Chemistry Producers Term tC18
Pore Size 125 Å
Carbon Load 17.0 %
Endcapping endcapped
Country of Origin United States of America (USA)
pH Minimum 2.0
pH Maximum 8.0
Mode of Separation Reversed Phase Chromatography (RP)
Matrix Silica
Particle Morphology spherical, fully porous

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