Novel carbamoyl type quinine and quinidine based chiral anion exchangers implementing alkyne-azide cycloaddition immobilization chemistry
Jazyk angličtina Země Nizozemsko Médium print-electronic
Typ dokumentu časopisecké články
PubMed
24630061
DOI
10.1016/j.chroma.2014.02.026
PII: S0021-9673(14)00256-8
Knihovny.cz E-zdroje
- Klíčová slova
- Chiral anion exchange chromatography, Cinchona alkaloids, Click chemistry, Copper-catalysis, Enantiomer separation, Liquid chromatography,
- MeSH
- alkyny chemie MeSH
- aminokyseliny chemie MeSH
- azidy chemie MeSH
- chinidin analogy a deriváty chemická syntéza chemie MeSH
- chinin analogy a deriváty chemická syntéza chemie MeSH
- chromatografie MeSH
- click chemie MeSH
- cykloadiční reakce MeSH
- iontová výměna MeSH
- karbamáty chemická syntéza chemie MeSH
- oxid křemičitý MeSH
- stereoizomerie MeSH
- Publikační typ
- časopisecké články MeSH
- Názvy látek
- alkyny MeSH
- aminokyseliny MeSH
- azidy MeSH
- chinidin MeSH
- chinin MeSH
- karbamáty MeSH
- oxid křemičitý MeSH
The synthesis and chromatographic evaluation of a series of new Cinchona derived chiral weak anion exchangers is presented. Huisgen Cu(I) mediated alkyne-azide cycloaddition, so-called click chemistry, was used as an immobilization strategy. In this way it was possible to immobilize about 90% of offered selector via 1,2,3-triazole linker, which displays a more efficient way of binding the selector to modified silica compared to common radical mediated thiol-ene addition. Problems associated with potential radical scavenging properties of chiral selectors thereby could be circumvented. The evaluation of the synthesized chiral stationary phases regarding chromatographic behavior was carried out using polar organic mode mobile phase composition and a set of representative chiral organic acids. Different loading densities revealed an optimum selector density of about 310μmol/g chiral stationary phase with respect to resolution and selectivity. A decrease of performance was observed for higher loading, indicating mutual spatial influence of selector units leading to sterical hindrance. In addition, we observed that the effect of free azide groups on retention is negligible and the overall chromatographic behavior is comparable to other Cinchona derived chiral stationary phases.
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