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Supelco

Ascentis® Express 90 Å C18 (2.7 μm) HPLC Columns

L × I.D. 15 cm × 2.1 mm, HPLC Column

Sinonimo/i:

Core-shell (SPP) Fused Core C18 HPLC column

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About This Item

Codice UNSPSC:
41115700
eCl@ss:
32110501
NACRES:
SB.52

product name

Colonna per HPLC Ascentis® Express C18, 2,7 μm, 2.7 μm particle size, L × I.D. 15 cm × 2.1 mm

Materiali

stainless steel column

agenzia

suitable for USP L1

Nome Commerciale

Ascentis®

Caratteristiche

endcapped

Produttore/marchio commerciale

Ascentis®

Confezionamento

1 ea of

Parametri

60 °C temp. range
600 bar max. pressure (9000 psi)

tecniche

HPLC: suitable
LC/MS: suitable
UHPLC-MS: suitable
UHPLC: suitable

Lungh. × D.I.

15 cm × 2.1 mm

Area superficiale

135 m2/g

Impurezze

<5 ppm metals

Matrice

Fused-Core particle platform
superficially porous particle

Gruppo funzionale matrice

C18 (octadecyl) phase

Dimensione particelle

2.7 μm

Dimensione pori

90 Å

pH di lavoro

2-9

applicazioni

food and beverages

Tecnica di separazione

reversed phase

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Descrizione generale

Le colonne per HPLC Ascentis Express, grazie alla tecnologia delle particelle Fused-Core®, offrono l′alta velocità e l′elevata efficienza delle particelle di dimensioni inferiori a 2 μm, mantenendo ridotte nel contempo le contropressioni. La combinazione di alta efficienza e bassa contropressione è un grande vantaggio per tutti coloro che utilizzano la UPLC® (o altri sistemi a pressione ultra-alta) e l′HPLC convenzionale.
Per ulteriori informazioni su questa nuova tecnologia, si rimanda alla pagina Ascentis Express

Note legali

Ascentis is a registered trademark of Merck KGaA, Darmstadt, Germany
Fused-Core is a registered trademark of Advanced Materials Technology, Inc.
UPLC is a registered trademark of Waters

Codice della classe di stoccaggio

11 - Combustible Solids

Classe di pericolosità dell'acqua (WGK)

WGK 3

Punto d’infiammabilità (°F)

Not applicable

Punto d’infiammabilità (°C)

Not applicable


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Petra Šilarová et al.
Food chemistry, 237, 471-480 (2017-08-03)
The degradation of catechins and other phenolics in green tea infusions were monitored using fast HPLC/MS separation. The final separation was performed within 2.5min using Ascentis Express C18 column (50mm×2.1mm i.d.) packed with 2μm porous shell particles. Degradation was studied
Pankaj Partani et al.
Journal of chromatographic science, 54(8), 1385-1396 (2016-05-27)
A liquid chromatography-tandem mass spectrometry method was developed and validated for the simultaneous determination of simvastatin (SV) and simvastatin acid (SVA) in human plasma. To improve assay sensitivity and achieve simultaneous analysis, SVA monitored in (-)ESI (electrospray ionization) mode within
Francesco Pio Prencipe et al.
Journal of chromatography. A, 1349, 50-59 (2014-05-27)
The study was aimed at developing a new analytical method for the metabolite fingerprinting of bioactive compounds in Humulus lupulus L. (hop), together with a simple extraction procedure. Different extraction techniques, including maceration, heat reflux extraction (HRE), ultrasound-assisted extraction (UAE)
Silvia Jakabová et al.
Journal of chromatography. A, 1232, 295-301 (2012-03-07)
Hyoscyamine (atropine) and scopolamine are the predominant tropane alkaloids in the Datura genus, occurring in all plant organs. The assessment of the alkaloid content of various plant parts is essential from the viewpoint of medical use, but also as a
Heena et al.
Journal of chromatographic science, 53(5), 800-806 (2014-10-18)
This study represents a new analytical high-performance liquid chromatography-fluorescence detector method for the determination of Al(III) as Al(III) complex with 8-hydroxyquinoline-5-sulfonic acid in a tap water sample and a coke sample. A micellar liquid chromatographic method is proposed for the

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