BRAND / VENDOR: Waters

Waters, 186009476, ACQUITY Premier CSH Phenyl-Hexyl Column 1.7 µm, 2.1 x 150mm, 1/pk

CATALOG NUMBER: 186009476

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Product Description

ACQUITY CSH Phenyl-Hexyl Columns are used to provide alternative analyte selectivity and are a valuable tool for method development. The trifunctionally bonded C6 phenyl ligand is a robust, low bleed sorbents that selectively retains polyaromatic compounds through pi-pi interactions. MaxPeak High Performance Surface hardware technology significantly reduces unwanted analyte/surface interactions that can lead to poor peak shape and losses in signal intensity.

Specifications
Chemistry: Phenyl
Separation Mode: Reversed Phase
Particle Substrate: Hybrid
pH Range Min: 1 pH
pH Range Max: 11 pH
Maximum Pressure: 18000 psi (1240 Bar)
Endcapped: Yes
Bonding Technology: Phenyl-Hexyl
Silanol Activity: Low
Particle Shape: Spherical
Particle Size: 1.7 µm
Endfitting Type: Parker-style
Pore Size: 130 Å
Format: Premier Column
Surface Area: 185
System: UPLC
Particle Technology: CSH
Technique: LC
USP Classification: L11
Inner Diameter: 2.1 mm
Length: 150 mm
Carbon Load: 14 %
eCord: Yes
UNSPSC: 41115709
Brand: ACQUITY UPLC
Product Type: Columns
Units per Package: 1 pk

Additional Information
ACQUITY Premier CSH Phenyl-Hexyl Column 1.7 µm, 2.1 x 150mm, 1/pk The ACQUITY UPLC CSH C18 columns were designed by Waters, the world's foremost specialist measurement business, in response to feedback gathered at numerous client forums. Waters developed the Charged Surface Hybrid (CSH) Technology, which is the basic mechanism behind the ACQUITY UPLC CSH columns, using the next generation of particle technology. In comparison to other reversed-phase UPLC columns, the ACQUITY UPLC CSH C18 columns have a wider range of selectivity and are not as expensive as Waters' other alternatives. The ACQUITY UPLC CSH C18 columns are ultra-efficient and offer a wide variety of selectivity and sensitivity without compromising important performance characteristics like peak shape for basic chemicals, low column bleed, and seamless transferability across particle sizes and column formats. The ACQUITY UPLC CSH C18 columns provide Trifluoroacetic acid (TFA) peak shape performance without the introduction of TFA, making method development faster and more straightforward. Although Trifluoroacetic Acid produces crisp peak morphologies for basic chemicals, it is an ion-pairing agent that is difficult to remove from the ACQUITY phase after being exposed to a Liquid Chromatography column. With MS-friendly mobile phase additives such as formic acid, the ACQUITY UPLC CSH C18 columns give better peak shape performance. As formic acid does not react with an ion-pairing agent, this leads to a faster and more straightforward technique development. Under acidic, low ionic strength mobile phase conditions, the ACQUITY UPLC CSH C18 columns provide increased analytical loadability, delivering sharper, narrower peaks for basic chemicals. The columns are also suitable for isolation and purification due to their enhanced loadability, allowing them to use a smaller preparative column, lowering solvent consumption and fraction quantities. To find different product offerings from Waters or even to shop for lab equipment , please check out our brochure or browse through our website so you can replenish your stock and add to your existing equipment portfolio. We also recommend that you to review the ACQUITY Premier CSH Phenyl-Hexyl Column with VanGuard FIT, 1.7 µm, 2.1 x 150 mm, 1/pk ; ACQUITY CSH Phenyl-Hexyl Columns are used to provide alternative analyte selectivity and are a valuable tool for method development. The trifunctionally bonded C6 phenyl ligand is a robust, low bleed sorbent that selectively retains polyaromatic compounds through pi-pi interactions.

FAQ
What Is The pH Range That The ACQUITY Premier CSH Phenyl-Hexyl Column Should Be Used In? The ACQUITY Premier CSH Phenyl-Hexyl Column can operate in a pH range of 1 to 11, but working at high pressures, pH, and/or temperatures will result in shorter column lives.

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Collaboration

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