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Purospher® STAR Phenyl (3 µm) HPLC Columns

L × I.D. 150 mm x 3 mm Hibar® RT HPLC Column

Synonym(s):

Purospher® STAR Phenyl, 3µm Hibar® RT 150-3

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About This Item

UNSPSC Code:
41115700
NACRES:
SB.52

product name

Purospher® STAR Phenyl (3 µm), L × I.D. 150 mm x 3 mm Hibar® RT HPLC column

material

stainless steel column

Quality Level

Agency

suitable for USP L11

product line

Purospher®

feature

endcapped: no

packaging

1 ea of

extent of labeling

12.5% Carbon loading

parameter

400 bar pressure
65 °C max. temp.

technique(s)

HPLC: suitable
LC/MS: suitable
mass spectrometry (MS): suitable (High)

column L × I.D.

15 cm × 3 mm

surface area

330 m2/g

matrix

fully porous particle

matrix active group

Phenyl bonding phase

particle size

3 μm

pore size

120 Å pore size

operating pH range

1.5-10.5

separation technique

reversed phase
supercritical fluid (SFC)

storage temp.

no temp limit

General description

Purospher® STAR Phenyl, 3 µm UHPLC columns are the best alternative to RP-8 or RP-18 columns for the efficient separation of aromatic compounds, and compounds containing aromatic groups. Purospher® STAR Phenyl can retain analytes via several different mechanisms, including ο-ο interactions between the overlap of the delocalized electrons on the analyte and the stationary phase phenyl group, and via partitioning between the mobile phase and the hydrophobic aryl-alkyl phase. Our Purospher® STAR Phenyl columns are based on highpurity silica particles, which provide symmetrical peaks for basic compounds, as well as high stability and excellent reproducibility. Furthermore, hydrophobic compounds elute much faster with Purospher® STAR Phenyl columns than with C-18 columns.Purospher® STAR Phenyl, 3 µm Hibar® RT 150-3 is a ready to use HPLC column suitable for connection to any HPLC system.The column dimension of 150 mm length x 3 mm I.D. is the optimal choice for HPLC separation of complex samples. A 3 mm I.D. column enables a more sustainable separation in comparison to 4 or 4.6 mm I.D. column due to the use of less solvent for the chromatographic separation.Learn more about Purospher® STAR HPLC and UHPLC ColumnsLearn more about the Supelco HPLC Column portfolio and Method development:Brochure: HPLC and UHPLC Column Selection GuideBrochure: A Practical Guide to HPLC - Method Development Guide

Application

Intended to be used in the separation of antibiotics, aromatic amines, flavonoids, ketones, nucleosides, PAHs, peptides, preservatives, steroids, metabolized steroids, and sweeteners.

Features and Benefits

  • Ultra-pure silica (99.999%) for excellent peak symmetry
  • High separation efficiency
  • Enhanced selectivity for aromatic compounds
  • Suitable for use with highly aqueous mobile phases
  • Good suitability for LC-MS applications

Legal Information

Hibar is a registered trademark of Merck KGaA, Darmstadt, Germany
Purospher is a registered trademark of Merck KGaA, Darmstadt, Germany

Certificates of Analysis (COA)

Search for Certificates of Analysis (COA) by entering the products Lot/Batch Number. Lot and Batch Numbers can be found on a product’s label following the words ‘Lot’ or ‘Batch’.

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Small molecules are ions and compounds of molecular weight typically less than 900 daltons. These compounds can be effectively separated and analyzed by HPLC, UHPLC and LC-MS using mainly silica particles or monolithic stationary phases with a broad range of column chemistries (modifications).

Small molecules are ions and compounds of molecular weight typically less than 900 daltons. These compounds can be effectively separated and analyzed by HPLC, UHPLC and LC-MS using mainly silica particles or monolithic stationary phases with a broad range of column chemistries (modifications).

Small molecules are ions and compounds of molecular weight typically less than 900 daltons. These compounds can be effectively separated and analyzed by HPLC, UHPLC and LC-MS using mainly silica particles or monolithic stationary phases with a broad range of column chemistries (modifications).

Small molecules are ions and compounds of molecular weight typically less than 900 daltons. These compounds can be effectively separated and analyzed by HPLC, UHPLC and LC-MS using mainly silica particles or monolithic stationary phases with a broad range of column chemistries (modifications).

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