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Thermo Scientific™ HyperSep™ Hypercarb™ SPE 96-Well Plates
Unique graphite carbon-based SPE 96-well plates offer retention and separation of polar compounds where silica and resin stationary phases fail
2305.00 DKK - 5345.67 DKK
Specifications
For Use With (Application) | Retention of Highly Polar Compounds |
---|---|
Sorbent | HyperSep Hypercarb |
Type | Solid Phase Extraction Well Plate |
Volume (Metric) Well | 1 mL |
Product Code | Brand | Description | Price | Quantity & Availability | |||||
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Product Code | Brand | Description | Price | Quantity & Availability | |||||
10418294
|
Thermo Scientific™
60302-601 |
Individual SPE Wells, 10 mg Bed weight | N/A | ||||||
11587631
|
Thermo Scientific™
60302-602 |
Individual SPE Wells, 25 mg Bed weight | N/A | ||||||
10743877
|
Thermo Scientific™
60302-603 |
Individual SPE Wells, 50 mg Bed weight | N/A | ||||||
10009002
|
Thermo Scientific™
60302-606 |
96-Well Plate; 10 mg Bed weight |
3251.70 DKK
Each |
In Stock
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10354083
|
Thermo Scientific™
60302-607 |
96-Well plate; 25 mg Bed weight |
4097.20 DKK
Each |
Estimated Shipment: 11-02-2025
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10101223
|
Thermo Scientific™
60302-608 |
96-Well Plate; 50 mg Bed weight |
5345.67 DKK
Each |
Estimated Shipment: 12-12-2024
Log in to see stock. |
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Description
The use of SPE sample preparation can significantly enhance the robustness and reliability of many biological, pharmaceutical, forensic and environmental applications.
Thermo Scientific™ HyperSep Hypercarb SPE 96-Well Plates feature a unique graphite carbon-based material that retains highly polar compounds where silica and resin columns fail. The chemistry allows selectivity for structurally similar compounds, and allows the separation of compounds using simple solvents.
HyperSep Hypercarb SPE 96-Well Plates are packed with 30μm spherical particles of 100% porous graphitic carbon (PGC). Composed of flat sheets of hexagonally arranged carbon atoms with a fully satisfied valence, the surface of Hypercarb is crystalline and highly reproducible, with no micropores.The chemistry is pH stable 0 to 14, and offers a unique retention mechanism that provides completely different selectivity than silica or polymeric phases, determined by the strength of interaction between analytes and the Hypercarb surface.
High batch-to-batch reproducibility ensures consistent, reproducible analytical performance
Strong retention properties allow use of low bed weights for concentrated extracts
No restriction for polar compounds
No restriction on eluents use 100% organic or 100% aqueous and anything in between
HyperSep SPE Cartridges and Plates
Thermo Scientific™ HyperSep™ Solid phase extraction cartridges offer reproducible, reliable sample preparation in a traditional format. Available in a wide range of chemistries and bed weights, the cartridges are ideal for large samples and conform to industry standard configurations, allowing efficient routine processing by vacuum, by positive pressure or centrifugation.
The Thermo Scientific™ HyperSep-96™ System incorporates traditional solid phase extraction sorbents into 96-well plate format providing fast analysis without sacrificing accuracy or reproducibility. The innovative design of HyperSep-96 well plates provides flexibility for both method development and scale adjustment to 96-well without method revalidation. Well plates are customizable, allowing any arrangement of wells with differing sorbent chemistries for simultaneous processing. HyperSep-96 products are either available in packs of 100 individual wells or in pre-assembled plates.
Specifications
Retention of Highly Polar Compounds | |
HyperSep Hypercarb | |
Solid Phase Extraction Well Plate | |
1 mL |
Limited warranty period: Subject to all warranty requirements and exclusions set out in our Terms and Conditions of Sale, this product is warranted from the date we ship the product and for ninety (90) days thereafter. Disclaimer to internal research use restriction: Any restrictions on the purchaser to utilize the product(s) for internal research purposes only does not apply to the product(s) on the web pages associated with this statement.