Product Description
PL-SAX 1000Å, 4.6 x 250 mm, 10 µm. A strong anion exchange HPLC column with fully porous PS/DVB particles. This column can withstand a wide pH range (1-14) and is stable at elevated temperatures
Specifications:
Brand: PL-SAX
Hardware: SS
Inner Diameter (ID): 4.6 mm
LC Platform: Stainless Steel
Length: 250 mm
Maximum Temperature: 80 °C
Part Number Application Domain: Biopharma
Part Number Application: OligosProteins
Particle Size: 10 µm
Particle Type: Fully Porous
Phase: SAX
Pore Size: 1000 Å
Pressure Rating: 207 bar
Separation Mode: Ion Exchange (IEX)
Shipping Solvent: 0.1M Sodium Sulfate
Technique: LC
UNSPSC Code: 41115711
pH Range: 1-14
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The PL-SAX 1000Å, 4.6 x 250 mm, 10 µm column is specifically engineered for strong anion exchange (SAX) chromatography, providing reliable separation of anionic species in a variety of analytical and preparative workflows. Featuring a 1000 Angstrom pore size, this robust silica-based column excels in the analysis and purification of large biomolecules such as nucleic acids, oligonucleotides, and negatively charged peptides. Its 10 micron particle size ensures high sample capacity and minimized backpressure, making it suitable for demanding, high-throughput applications in pharmaceutical research, biotechnology, and academic laboratories.
This column is fully compatible with standard HPLC systems from Agilent and other major manufacturers, ensuring seamless integration into existing laboratory workflows for both analytical and small-scale preparative tasks. Its optimized design supports reproducible retention times and sharp peak resolution, crucial for method development, quality control, and research studies. Related products include a range of strong and weak anion exchange columns with different pore and particle sizes, accommodating diverse analytical requirements. The PL-SAX 1000Å column is a reliable solution for scientists seeking consistent, high-performance results in the separation and purification of charged biomolecules and complex biological samples.
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Collaboration
Tony Tang
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