TY - JOUR
T1 - "Click" immobilized perphenylcarbamated and permethylated cyclodextrin stationary phases for chiral high-performance liquid chromatography application
AU - Wang, Yong
AU - Young, David J.
AU - Tan, Timothy Thatt Yang
AU - Ng, Siu Choon
PY - 2010/7
Y1 - 2010/7
N2 - Two cyclodextrin-based chiral stationary phases have been prepared by immobilization of functionalized mono-6-azido-β-CD derivatives to alkynyl modified silica via " click" chemistry and applied to the HPLC enantioseparation of various chiral compounds. The perphenylcarbamated CD CSP (CCP-CSP) exhibited excellent chiral recognition of a wide range of analytes including racemic aryl alcohols, flavonoids, bendroflumethiazide, atropine and some β-blockers. Methanol proved to be a better organic modifier than acetonitrile for most of the analytes with the exception of bendroflumethiazide. The " click" chemistry immobilized permethylated CD CSP (CCM-CSP) afforded poor chiral recognition for most analytes, but could resolve non-aromatic ionone derivatives which were not separated on CCP-CSP. These results suggest that resolution with cyclodextrin derived CSPs depend on a complex interplay of 'host'-'guest' inclusion, hydrogen bonding, π-π and hydrophobic interactions.
AB - Two cyclodextrin-based chiral stationary phases have been prepared by immobilization of functionalized mono-6-azido-β-CD derivatives to alkynyl modified silica via " click" chemistry and applied to the HPLC enantioseparation of various chiral compounds. The perphenylcarbamated CD CSP (CCP-CSP) exhibited excellent chiral recognition of a wide range of analytes including racemic aryl alcohols, flavonoids, bendroflumethiazide, atropine and some β-blockers. Methanol proved to be a better organic modifier than acetonitrile for most of the analytes with the exception of bendroflumethiazide. The " click" chemistry immobilized permethylated CD CSP (CCM-CSP) afforded poor chiral recognition for most analytes, but could resolve non-aromatic ionone derivatives which were not separated on CCP-CSP. These results suggest that resolution with cyclodextrin derived CSPs depend on a complex interplay of 'host'-'guest' inclusion, hydrogen bonding, π-π and hydrophobic interactions.
KW - "Click" chemistry
KW - β-Cyclodextrin
KW - Chiral stationary phases
KW - Enantioseparation
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U2 - 10.1016/j.chroma.2010.06.003
DO - 10.1016/j.chroma.2010.06.003
M3 - Article
C2 - 20579654
AN - SCOPUS:77954621576
SN - 0021-9673
VL - 1217
SP - 5103
EP - 5108
JO - Journal of Chromatography A
JF - Journal of Chromatography A
IS - 31
ER -