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11060

Supelco

GC Stationary Phase

phase Ethylene glycol adipate (EGA), bottle of 25 g

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About This Item

UNSPSC Code:
23151817

agency

meets requirements for USP G23

form

solid

packaging

bottle of 25 g

parameter

100-225 °C temp. range

technique(s)

gas chromatography (GC): suitable

matrix active group

Ethylene glycol adipate (EGA) phase

solubility

acetone: soluble

column type

packed GC

General description

In gas chromatography (GC) solutes are sorbed and desorbed only in the stationary phase. There is a large variety of stationary phases[1] and the choice of it depends on its ability to interact with the sample.[2]
Synthesized specifically to be purer, of narrow molecular weight range, and without trace catalysts or impurities for use as a GC stationary phase.

Application

Ethylene glycol adipate (EGA) GC stationary phase was used for the separation of diastereoisomeric esters and amides in order to determine steric purity of asymmetric compounds.[3]

Kit Components Only

Product No.
Description

  • Di[poly(ethylene glycol)] adipate

Storage Class

11 - Combustible Solids

wgk_germany

WGK 1

flash_point_f

Not applicable

flash_point_c

Not applicable

ppe

Eyeshields, Gloves, type N95 (US)


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Basics of Analytical Chemistry and Chemical Equilibria
Tissue BM.
Science, 10-10 (2013)
Effect of solute structure on separation of diastereoisomeric esters and amides by gas-liquid chromatography.
Westley JW, et al.
Analytical Chemistry, 40 (13), 2046-2049 (1968)
Chromatography: Concepts and Contrasts.
Miller JM.
Science, 102-103 (2005)
Jin-Yan Tan et al.
Steroids, 156, 108583-108583 (2020-01-27)
Five undescribed ergostane-type C28 sterols, daturmetesides A-E (1-5), were isolated from the leaves of Datura metel L. The chemical structures of these new compounds were characterized through extensive spectroscopic analysis and comparison with literatures. Among them, the absolute structures of
Boer Li et al.
FASEB journal : official publication of the Federation of American Societies for Experimental Biology, 34(8), 11058-11067 (2020-07-07)
Excessive bone resorption over bone formation is the root cause for bone loss leading to osteoporotic fractures. Development of new antiresorptive therapies calls for a holistic understanding of osteoclast differentiation and function. Although much has been learned about the molecular

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