对映体
毛细管电泳
环糊精
化学
硫酸化
手性(物理)
色谱法
超分子化学
电泳
分子
组合化学
有机化学
生物化学
手征对称破缺
物理
量子力学
Nambu–Jona Lasinio模型
夸克
作者
Jan Bílek,Dušan Koval,Petra Sázelová,Veronika Šolı́nová,Lukáš Severa,Patricia González Gutiérrez,Filip Teplý,Václav Kašička
标识
DOI:10.1002/jssc.202300417
摘要
Diquats, derivatives of the widely used herbicide diquat, represent a new class of functional organic molecules. A combination of their special electrochemical properties and axial chirality could potentially result in their important applications in supramolecular chemistry, chiral catalysis, and chiral analysis. However, prior to their practical applications, the diquats have to be prepared in enantiomerically pure forms and the enantiomeric purity of their P ‐ and M ‐isomers has to be checked. Hence, a chiral capillary electrophoresis (CE) method has been developed and applied for separation of P ‐ and M ‐enantiomers of 11 new diquats. Fast and better than baseline CE separations of enantiomers of all 11 diquats within a short time 5–7 min were achieved using acidic buffer, 22 mM NaOH, 35 mM H 3 PO 4 , pH 2.5, as a background electrolyte, and 6 mM randomly sulfated α‐, β‐, and γ‐cyclodextrins as chiral selectors. The most successful selector was sulfated γ‐cyclodextrin, which baseline separated the enantiomers of all 11 diquats, followed by sulfated β‐cyclodextrin and sulfated α‐cyclodextrin, which baseline separated enantiomers of 10 and nine diquats, respectively. Using this method, a high enantiopurity degree of the isolated P ‐ and M ‐enantiomers of three diquats with a defined absolute configuration was confirmed and their migration order was identified.
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