Product Description
PLRP-S 1000Å, 50 µm, bulk media, 10 g. Fully porous PS/DVB reversed-phase particle support that is stable at elevated temperatures and a wide pH range(1-14). Available in wide range of particle and pore sizes for targeted applications
Specifications:
Brand: PLRP-S
Hardware: Bulk Media
LC Platform: Bulk Media
Maximum Temperature: 200 °C
Part Number Application Domain: Biopharma
Part Number Application: Intact & Subunit AnalysisOligosPeptides
Particle Size: 50 µm
Particle Type: Fully Porous
Phase: PLRP-S
Pore Size: 1000 Å
Pressure Rating: 103 bar
Separation Mode: Reversed Phase
Shipping Solvent: Acetonitrile/Water
Technique: LC & LC/MS
UNSPSC Code: 41115711
Weight: 10 g
pH Range: 1-14
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Agilent’s PLRP-S 1000Å, 50 µm bulk media is a high-performance polymeric stationary phase designed for robust and versatile chromatographic separations. Featuring a 1000 angstrom pore size and 50 micron particle size, this media is ideal for the purification and analysis of large biomolecules, such as proteins, peptides, and oligonucleotides. Its polystyrene-divinylbenzene construction offers chemical and pH stability over a wide range, supporting reverse phase chromatography in demanding research environments.
The bulk format provides flexibility for packing custom columns or preparative systems, making it suitable for both method development and scale-up processes in biopharmaceutical research, proteomics, and analytical laboratories. It excels in applications requiring reproducible performance and minimal non-specific interactions, ensuring reliable results even with challenging biological samples.
This media is compatible with a variety of HPLC and preparative chromatography systems. It can be effectively paired with Agilent’s portfolio of preparative columns and hardware, as well as other industry-standard instrumentation. Researchers can use it alongside related separation media for complementary workflows or multi-dimensional separation strategies. Its durability and consistent batch-to-batch quality make it a preferred choice for laboratories seeking efficient, high-purity separation of macromolecules.
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Collaboration
Tony Tang
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