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Chiral Discrimination of Inhalation Anesthetics and Methyl Propionates by Thickness Shear Mode Resonators: New Insights into the Mechanisms of Enantioselectivity by Cyclodextrins

机译:厚度剪切模式共振器对吸入麻醉剂和丙酸甲酯的手性区分:环糊精对映体选择性机理的新见解

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摘要

The discrimination of the enantiomers of methyl lactate, methyl 2-chloropropionate, and the inhalation anesthetics enflurane, isoflurane, and desflurane in the gas phase has been performed using thickness shear mode resonators. The selective coating was a modified perpentylated γ-cyclodextrin derivative dissolved in a polysiloxane matrix. A new model for the sorption of the chiral compounds into the cyclodextrin cavities and into the polymer matrix was established for the purpose of characterizing the sensor responses. This characterization included the fitting of the sensor responses (preferential and nonpreferential sorption) according to the model and extracting the characteristic parameters. In particular we attempted to explain the observed variation of the chiral discrimination factor α with changing analyte or cyclodextrin concentrations and search for an invariable parameter, character-for a certain analyte-cyclodextrin combination. The process of chiral or "molecular" recognition was thoroughly investigated.
机译:已经使用厚度剪切模式共振器对乳酸甲酯,2-氯丙酸甲酯的对映异构体以及气相中的吸入麻醉剂庚烷,异氟烷和地氟烷进行了区分。选择性涂层是溶解在聚硅氧烷基质中的改性的全戊基化的γ-环糊精衍生物。建立了手性化合物吸附到环糊精腔体和聚合物基质中的新模型,以表征传感器响应。此表征包括根据模型拟合传感器响应(优先和非优先吸附)并提取特征参数。特别地,我们试图解释观察到的手性鉴别因子α随分析物或环糊精浓度的变化而变化,并寻找一个不变的参数,即某些分析物-环糊精组合的特征。彻底研究了手性或“分子”识别的过程。

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