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Reservoir sizes from 200 to 500mL
Type | Chromatography Column |
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Stopper Number | 2 |
Material | Borosilicate Glass |
Use for predictable HPLC separations of compounds in highly aqueous mobile phases.
For flash chromatography
Joint Size | 24/40 |
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Prepacked columns for high-resolution purification of proteins and other biomolecules by ion exchange chromatography. They are well-suited for the preparation of highly pure proteins for structural studies and protein analysis.
Particle Size | ∼9μm |
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Flow Rate | 0.5 to 2 mL/min. |
Packing Material | Highly Cross-Linked Agarose |
Temperature (Metric) | 4°C to 40°C |
Column Type | Ion Exchange Column |
pH | 2 to 12 |
Quantity | 1 Ea. |
Material | Tricorn™ Glass |
For Use With (Application) | Anaylsis or Purification of Proteins and Nucleic Acids |
Particle Shape | Spherical |
Max. Pressure | 4 MPa (40 bar) |
Product Line | Capto |
Replacement end fitting with bed support for Kimble™ CHROMAFLEX™ Flow Adapters
Includes | Bed Support |
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Quantity | 1 |
Column Format: Guard Column; Carbon Load: 13%; Pore Size: 150 Å; Column Phase: Reversed Phase
Use this column for reversed-phase separation of proteins and other biomolecules.
Pore Size | 300 Å |
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Particle Size | 5 μm |
Carbon Load | 5% |
Temperature | 60°C |
Phase | Reversed Phase |
Endcapped | Yes |
Column Type | Reversed Phase |
pH | 2 to 9 |
Surface Area | 100 m²/g |
Max. Pressure | 5800 psi (400 bar) |
Product Line | BioBasic |
USP Type | L7 |
Column Format: Capillary Column; Carbon Load: 4%; Pore Size: 175 Å; Column Phase: Normal and Reversed Phase
Javelin guard columns offer convenient, easy to use protection for analytical HPLC columns
Use with high-pressure UHPLC for better separation, speed, and throughput of difficult-to-resolve mixtures of halogenated compounds including pesticides.
Pore Size | 175 Å |
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Particle Size | 1.9 μm |
Temperature | 60°C |
Phase | Reversed Phase |
Endcapped | Yes |
Packing Material | Spherical, Fully Porous, Ultrapure Silica |
Column Type | Reversed Phase |
Diameter (Metric) | 2.1 mm |
Surface Area | 220 m²/g |
Max. Pressure | 21756 psi (1500 bar) |
Product Line | Hypersil GOLD |
Column Format | Analytical Column |
Obtain exceptional peak shape and high resolution for fast UHPLC high-pressure, high-throughput applications using generic gradients on Vanquish UHPLC and LC/MS systems.
Pore Size | 175 Å |
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Stationary Phase | C18 Selectivity |
Temperature | 60°C |
Phase | Reversed Phase |
For Use With | LC/MS |
Endcapped | Yes |
Column Type | Reversed Phase |
Surface Area | 220 m²/g |
Column Format | Analytical Column |
Particle Size | 1.9 μm |
Carbon Load | 11% |
Packing Material | Spherical, Fully Porous, Ultrapure Silica |
Diameter (Metric) | 2.1 mm |
pH | 1 to 11 |
Technique | Bio-LC |
Product Line | Hypersil GOLD |
USP Type | L1 |
Use for UHPLC high pressure applications to retain and resolve polar analytes with highly aqueous mobile phases on the Vanquish UHPLC system.
Pore Size | 175 Å |
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Stationary Phase | C18 |
Temperature | 60°C |
Phase | Reversed Phase |
For Use With | HILIC |
Endcapped | Polar |
Column Type | Reversed Phase |
Surface Area | 220 m²/g |
Max. Pressure | 18130 psi (1250 bar) |
Column Format | Analytical Column |
Particle Size | 1.9 μm |
Carbon Load | 12% |
Packing Material | Spherical, Fully Porous, Ultrapure Silica |
Diameter (Metric) | 2.1 mm |
pH | 2 to 9 |
Product Line | Hypersil GOLD |
USP Type | L1 |
Verify optimum selectivity of Thermo Scientific™ Accucore™ HPLC columns for polar analytes.
Pore Size | 80 Å |
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Particle Size | 2.6 μm |
Stationary Phase | aQ C18, HILIC, PFP |
For Use With | HPLC |
Endcapped | Yes |
Packing Material | Silica |
Diameter (Metric) | 2.1 mm |
Surface Area | 130 m²/g |
Particle Shape | Spherical Solid Core |
Column Format | HPLC Column Kit |
Optimize volatile organics analysis with this low-bleed, midpolarity GC column with high thermal stability.
Thermo Scientific™ POROS™ GoPure™ 0.8 cm pre-packed columns are intended for the screening of POROS affinity, ion exchange, and hydrophobic interaction chromatography (HIC) resins or for small scale purification.