ProSwift RP-4H

– 2 columns
Vendor: Dionex

 

ProSwift® reversed-phase monolith columns uniquely provide the advantages of high resolution at exceptionally high flow rates for protein separations. They deliver the outstanding resolving power of nonporous analytical media combined with faster separations than any bead based columns available. ProSwift polymer monolith columns achieve long column lifetime, exhibit reproducibility even after hundreds of runs, and have broad pH stability, providing high stringent wash capability.

  • High resolution at high speed
  • Highest operational flow rates available
  • High throughput and improved productivity
  • Optimal performance in a broad range of applications
  • Excellent stability over a wide pH range of 1 to 14
  • Outstanding reproducibility and ruggedness
  • High stringent wash compatible, for example, 1 M NaOH
  • High loading capacity

ProSwift polymer monolith media are uniquely suited for the separation of proteins. Each monolith is a single cylindrical polymer rod containing an uninterrupted, interconnected network of flow-through channels of a specific pore size. These large channels and the monolith’s nonporous surfaces result in fast mass transfer for high-resolution and fast protein separations. The channels also produce low backpressure, allowing the use of higher linear velocities with minimal loss of resolution.

ProSwift RP-4H

Brand specifications

Every parameter recorded for every column in this Brand is shown here. A single value applies across the Brand; multiple values show what is recorded across its columns.

Mode Reversed-Phase
Modification Polymer/ Phenyl
Max Pressure 2000 / 3000
Operating Temperature 70
pH stability from 1.0
pH stability to 14.0
Available: 50 – 250 mm
Internal Diameter Recorded value 1 mm
Particle Size Recorded value Not assigned
Pore Size Not recorded

Use the selectors above to narrow the list by specification, or search here by P/N or any displayed value.

2 columns shown
66640 250 1.0 Monolithic
69477 50 1.0 Monolithic
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