Product Description
Hypersil Cappilliary Columns are designed for use in HPLC, UHPLC, GC, and GC/MS applications. These columns provide reliable and consistent results in the analysis of a wide range of compounds. They are made from high-purity superficially porous silica, which ensures excellent reproducibility and performance. Hypersil Cappilliary columns are available in several lengths and different particle sizes, enabling you to select the right column for your application. They are also available in a variety of chemistries, such as normal phase, reversed phase, and ion exchange, for the separation of different compounds.
Universal Brand CompatibilityOur columns support integration with all major HPLC and GC systems, including Agilent, Thermo, Waters, Shimadzu, and PerkinElmer, ensuring seamless installation and direct connectivity with standard 10-32 fittings. This universal compatibility means you do not need to invest in specialized equipment, streamlining method transfers and system upgrades.
Diverse Chemistries and Particle SizesChoose from a wide spectrum of column chemistries such as C18, C8, Phenyl, Cyano, Silica, HILIC, and more. Particle sizes available1.7m, 3m, and 5mallow you to tailor separations for optimum speed, resolution, or sensitivity according to your analytical goals. Each column is batch-tested for reproducibility and reliability.
Robust Performance & Wide Range of ApplicationsThese columns are engineered to withstand demanding conditions, with pressure tolerance up to 1000 bar for UHPLC, and a pH stability range spanning 1.510 depending on stationary phase. Their versatility suits a variety of industries: pharmaceuticals, clinical, environmental, forensics, food and beverage, and petrochemicals, for highly accurate and reproducible analyses.
FAQs of Hplc Uplc Column Gc Gcms Capillary Column All Brands Hypersil:
Q: How do I select the correct column chemistry and dimensions for my application?
A: Column chemistry and dimensions should be chosen based on your specific analytes and separation requirements. For general reversed-phase separations, C18 is widely used, while C8, C4, Phenyl, Cyano, and other chemistries address specialized needs. Select inner diameter and length according to your sample load and resolution needs; our technical team can assist with method development and column selection.
Q: What are the benefits of using Hypersil and Hypersil GOLD columns?
A: Hypersil and Hypersil GOLD columns offer high separation efficiency, reproducibility, and robust mechanical strength. These features ensure precise and consistent results for both routine and challenging separations, with low backpressure and compatibility with rigorous analytical demands.
Q: When should I replace or regenerate my column?
A: Columns should be replaced when efficiency, resolution, or peak symmetry declines significantly, or when excessive backpressure occurs that routine maintenance cannot resolve. Proper storage and flushing routines prolong column life, and regeneration guides are available for certain chemistries.
Q: Where should columns be stored when not in use?
A: Columns should be stored in their original packaging under ambient or refrigerated conditions, depending on manufacturers recommendations and mobile phase composition. Avoid long-term storage in aqueous phases; instead, flush with the appropriate solvent before storing.
Q: What detection methods are supported by these columns?
A: Our columns are compatible with a wide range of detection systems, including UV, MS, FLD, RI, ECD, FID, and TCD. This flexibility allows you to integrate columns seamlessly into diverse analytical workflows without compromising sensitivity or selectivity.
Q: How do these columns enhance analytical workflow and benefit the user?
A: By offering universal brand compatibility, robust construction, and a broad range of chemistries, these columns streamline workflow, reduce downtime, and improve analytical accuracy. Users can expect high-resolution separations, reproducible results, and reduced overall costs through longer column lifespans and minimized troubleshooting.