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BRAND / VENDOR: Waters

Waters, 186006075, XBridge BEH Phenyl XP Column, 130Å, 2.5 µm, 4.6 mm X 100 mm, 1/pk

CATALOG NUMBER: 186006075
Regular price$0.99
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Product Description

XBridge BEH Phenyl columns provide complementary selectivity to C18 stationary phases, especially for polyaromatic compounds. This most chemically stable commercially available Phenyl sorbent on the market and provides you with ultra-low column bleed, long column lifetimes and excellent peak shape. Packed in ultra-low dispersion hardware, 2.5 µm eXtended Performance [XP] columns enable exceptional separation performance, robustness and throughput for HPLC assays while enabling a seamless transition path toward UPLC adoption.

Specifications
Chemistry: Phenyl
Separation Mode: Reversed Phase
Particle Substrate: Hybrid
pH Range Min: 1 pH
pH Range Max: 12 pH
Maximum Pressure: 10000 psi (690 Bar)
Endcapped: Yes
Bonding Technology: Phenyl-Hexyl
Silanol Activity: Low
Particle Shape: Spherical
Particle Size: 2.5 µm
Endfitting Type: Parker-style
Pore Size: 130 Å
Format: Column
Surface Area: 185
System: UPLC, UHPLC
Particle Technology: BEH
USP Classification: L11
Inner Diameter: 4.6 mm
Length: 100 mm
Carbon Load: 15 %
UNSPSC: 41115709
Brand: XBridge
Product Type: Columns
Units per Package: 1 pk

Additional Information
XBridge BEH Phenyl XP Column, 130Å, 2.5 µm, 4.6 mm X 100 mm, 1/pk The XBridge BEH Phenyl XP Column, designed specifically for polyaromatic chemicals, exhibits similar selectivity to C18 stationary phases. This Phenyl sorbent is the chemically most stable commercially available, with ultra-low column bleed, long column lifetimes, and excellent peak form. The 2.5 m eXtended Performance [XP] columns, which are packed in ultra-low dispersion hardware, offer excellent separation performance, robustness, and throughput for HPLC tests while allowing for a smooth transition to UPLC adoption, making them essential lab equipment. Use the unsurpassed column longevity of the XBridge BEH Phenyl Column to fulfill the demands of chromatographic analysis. In the mobile phase, the lab equipment is unique in that it can work with a wide range of pH and temperature. You can also effortlessly transfer methods to UPLC technology by using the XBridge BEH Phenyl Column. Count on the XBridge BEH Phenyl Column whenever alternative selectivity is required in separations. It's especially helpful for analytes that have an aromatic ring. Standard phenyl liquid chromatography columns have a narrower pH range than the XBridge BEH Phenyl Column, allowing for more robust method development. This is made feasible by the XBridge BEH Phenyl Column's unique bonding and end-capping, which is based on BEH particle technology. The trifunctional bonding of the phenyl hexyl-ligand permits the lab equipment to have exceptional low and high pH stability, making it the most repeatable phenyl column on the market. When compared to straight-chain alkyl columns and embedded-polar-group columns, the XBridge BEH Phenyl Column provides alternate selectivity for molecules with an aromatic moiety. As a result, more leeway can be given to orthogonal approaches for exceedingly difficult separations. Shop for lab equipment by looking through the Waters brochure or visiting our website, depending on your needs. Along with the XBridge BEH Phenyl XP Column, you may also be interested in checking out XBridge BEH Phenyl XP VanGuard Cartridge, 130Å, 2.5 µm, 3.9 mm X 5 mm, 3/pk ; XBridge BEH Phenyl VanGuard Cartridges are used to extend analytical column lifetime and performance by removing particulate contamination from the mobile phase stream. This cartridge is optimized to protect all 4.6 mm I.D. XBridge BEH Phenyl analytical columns containing 2.5 µm sorbent particles.

FAQ
Typically What Timeframe Is Needed To Change A Column? In HPLC, column modifications are a viable method development tool, and they can be switched at any time. To avoid leaving air in the column entrance, attach the new column with a slow flow of solvent from the injector outlet line to fill the intake fitting of your column. Plan to ignore the first injection because the second, third, and subsequent injections are usually repeatable.


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