UNSPSC |
41115712 |
Brand |
Oasis |
Product Type |
Application Kits |
Units per Package |
40 pk |
Oasis Method Development 1 cc Sorbent Selection Kit, 30 mg Sorbent per Cartridge, 30 µm, 40/pk
Using the Oasis Sorbent Selection Cartridge Kit, SPE techniques for LC/MS analysis may be developed quickly. Each of the four Oasis mixed-mode, ion-exchange chemistry cartridges in the kit, MAX (strong anion exchanger), WAX (weak anion exchanger), MCX (strong cation exchanger), and WCX, contains ten cartridges (weak cation exchanger). It is simple and quick to create sample preparation methods using these chemicals using just two SPE techniques.
A strong anion exchange mixed-mode polymeric sorbent called Oasis WAX was created for quick, easy, and highly selective sample preparation of strong acidic compounds. The Oasis MAX sorbent is water wettable, so even if the sorbent runs out, it can continue to provide greater retention and superior recoveries. This eliminates the need for additional safety measures to keep the sorbent beds from drying out during the important procedures prior to sample loading. A special mixed-mode polymeric sorbent called the Oasis MCX has been developed for more sensitive and selective extraction of fundamental compounds with cation-exchange groups. The Oasis MCX sorbent preserves its potential to offer greater retention and superior recoveries because it is water wettable.
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You might want to look into CORTECS T3 Column, 120Å, 2.7 µm, 2.1 mm X 50 mm, 1/pk; The CORTECS T3 columns offer high retention for both polar and non-polar analytes and are compatible with 100% aqueous mobile phases. When compared to completely porous particles of comparable particle size, the particle shape provides excellent efficiency and lower back pressure. Long lives, superb peak form, and extremely little column MS bleed are all features of CORTECS T3.
How Is Sample Component Enrichment Achieved While Present At Low Concentration?
Many techniques can be done to enrich sample components that are present in low amounts. You can change the gradient stages to selectively elute specific analytes. Another effective method involves using "large" sample volumes in an adsorption-promoting solvent. Use a "small" collection capacity with a desorption-friendly solvent. Instead of using the chemistry found in the analytical column, use sorbent chemistry appropriate to the analyte. To avoid the need for additional sample preparation, the chemistry of the solid-phase extraction column must be carefully chosen.