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Merck

64068-U

Supelco

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

L × I.D. 15 cm × 2.1 mm, HPLC Column

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About This Item

分類程式碼代碼:
41115700
NACRES:
SB.52

product name

Ascentis® Express Biphenyl Column, 2.7 μm particle size, L × I.D. 15 cm × 2.1 mm

材料

stainless steel hardware

品質等級

agency

suitable for USP L11

產品線

Ascentis®

特點

endcapped

製造商/商標名

Ascentis®

包裝

1 ea of

參數

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

技術

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

長度 × 內徑

15 cm × 2.1 mm

表面積

135 m2/g

雜質

<5 ppm metals

基質

particle platform (Fused-Core)
superficially porous particle

基質活性組

biphenyl phase

粒徑

2.7 μm

孔徑

90 Å pore size

工作pH值

2-9

應用

food and beverages

分離技術

reversed phase

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相关类别

一般說明

The Ascentis® Express biphenyl phase chemistry offers alternative selectivity for pharmaceutical analytes and drug metabolites that are not well retained or difficult to resolve on traditional alkyl (C18) and phenyl bonded phases. Ascentis Express HPLC columns, through the use of Fused-Core® particle technology, can provide you with both the high speed and high efficiencies of sub-2 ?m particles while maintaining lower backpressures. The combination of high efficiency and low backpressure benefits UHPLC users, as well as conventional HPLC users. Visit the Ascentis Express home page for more information on this new column technology.

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法律資訊

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

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The bonded, densely endcapped, dimethyl-biphenyl stationary phase of Ascentis® Express 90 Å Biphenyl, based on fused-core particles, provides a stable, reversed phase packing with enhanced π-π and mild steric interactions due to the two sequential phenyl groups bonded to the base silica.

The bonded, densely endcapped, dimethyl-biphenyl stationary phase of Ascentis® Express 90 Å Biphenyl, based on fused-core particles, provides a stable, reversed phase packing with enhanced π-π and mild steric interactions due to the two sequential phenyl groups bonded to the base silica.

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