Ascentis Express F5, colonne HPLC 5 microns, taille des particules 5 mum, l x i.d. 25 cm x 3,0 mm

Code: 50624-u D2-231

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

Application

HPLC Analysis of Benzodiazepines on Ascentis® Express F5, 5 µm

General description

Ascentis® Exp...


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Votre prix
£864.00 EACH

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

Application

HPLC Analysis of Benzodiazepines on Ascentis® Express F5, 5 µm

General description

Ascentis® Express 5 μm F5 is a high-speed, high-performance liquid chromatography column based on the highly efficient Fused-Core® particle design. The bonded, endcapped, dimethylpentafluorophenyl-propylsilane stationary phase of Ascentis Express 5 μm F5 provides a stable, reversed-phase packing with electron-deficient phenyl rings due to the presence of electronegative fluorines. In addition to forming π-π and mildly steric interactions, F5 phases also retain compounds by polar interactions. As a result of having both polar and non-polar character, F5 phases can show dual-mode retention behavior, sometimes producing a “U-shaped” retention as a function of acetonitrile content of the mobile phase, with retention increasing at both low and high concentrations of ACN (reversed-phase and HILIC retention modes). Ascentis Express 5 μm F5 can be used for basic, acidic, or neutral compounds with alternate selectivity from C18.

Legal Information

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

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

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agencysuitable for USP L43
application(s)food and beverages
featureendcapped
impurities﹤5 ppm metals
L × I.D.25 cm × 3 mm
manufacturer/tradenameAscentis®
materialstainless steel column
matrix active groupPFP (pentafluorophenyl) phase
matrixsuperficially porous particle, Fused-Core particle platform
operating pH2-8
packaging1 ea of
parameter60 °C temp. range, 600 bar max. pressure (9000 psi)
particle size5 µm
pore size90 Å pore size
product lineAscentis®
Quality Level100
separation techniquereversed phase
surface area90 m2/g
technique(s)HPLC: suitable, LC/MS: suitable
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