ASCENTIS EXPRESS biphényle,2,0 um, 5 cm x 2,1

Code: 584600-u D2-231

Non disponible en dehors du Royaume-Uni et de l'Irlande

Analysis Note

Target analytes include electron-poor molecules, aromatic or unsaturated compounds (ketones, nitriles, alkenes).

Application

UHPLC/...


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£615.00 EACH

Non disponible en dehors du Royaume-Uni et de l'Irlande

Analysis Note

Target analytes include electron-poor molecules, aromatic or unsaturated compounds (ketones, nitriles, alkenes).

Application

UHPLC/MS Analysis of Pain Management Opiates UHPLC/MS Analysis of SAMHSA 5 Panel on Ascentis® Express Biphenyl, 2 µm

General description

Ascentis® Express 90 Å Biphenyl is a high-speed, high-performance liquid chromatography column based on a superficially porous Fused-Core® particle design. The particle provides a thin porous shell of high-purity silica surrounding a solid silica core. This particle design exhibits very high column efficiency due to the shallow diffusion paths in the 0.4 µm thick porous shell and the small overall particle size of 2 µm. The bonded, densely endcapped, dimethyl-biphenyl stationary phase provides a stable, reversed phase packing with enhanced pi-pi and mild steric interactions due to the two sequential phenyl groups bonded to the base silica. The 90 Å Biphenyl can be used for basic, acidic, or neutral compounds with alternate selectivity from C18 and is especially useful for separating peaks that elute early on C18 and other phenyl phases.

Legal Information

Ascentis is a registered trademark of Sigma-Aldrich Co. LLC

Fused-Core is a registered trademark of Advanced Materials Technology, Inc.

agencysuitable for USP L11
column L × I.D.5 cm × 2.1 mm
extent of labeling7.0% Carbon loading
featureendcapped
materialstainless steel column
matrix active groupBiphenyl (dimethylbiphenyl) bonding phase
matrixFused-Core® particle platform, superficially porous particle
operating pH range2-9
packaging1 ea of
particle size2.0 µm
pore size90 Å pore size
product lineAscentis®
separation techniquereversed phase
surface area120 m2/g
technique(s)UHPLC-MS: suitable, HPLC: suitable, LC/MS: suitable, UHPLC: suitable
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