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Renewable sources from plants as the starting material for designing new terpene chiral ionic liquids used for the chromatographic separation of acidic enantiomers

机译:来自植物的可再生资源作为设计用于酸性对映异构体色谱分离的新型萜烯手性离子液体的原料

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Synthesis of cheap and natural resources is an important topic in green chemistry. For that reason, new chiral ionic liquids (CILs) containing a bicyclic terpene moiety were designed and prepared from renewable plant resources. The synthesis route was comprehensively described, especially a specific type of Menschutkin reaction, which gives high energy efficiency during the process. The physicochemical characteristics of the obtained chiral salts, including the spectral properties, melting point, crystal shape, specific rotation and solubility in various solvents were examined. The study presents the effect of new chiral ionic liquids as mobile phase additives on the chiral recognition of acidic enantiomers on a teicoplanin-based chiral stationary phase (CSP). Based on the van't Hoff relationships, the thermodynamic functions were determined. The plots revealed that the chiral recognition was enthalpy driven. The chiral salts obtained exhibited a synergistic effect with the teicoplanin-based stationary phase in the chromatographic system, enhancing the resolution of acidic enantiomers. Structural task-specific properties of the new terpene-based chiral ionic liquids were confirmed by molecular modeling and docking simulations.
机译:廉价和自然资源的合成是绿色化学中的重要课题。因此,由可再生植物资源设计并制备了含有双环萜烯部分的新型手性离子液体(CIL)。全面地描述了合成路线,特别是门舒特金反应的特定类型,该过程在生产过程中具有很高的能源效率。检查了获得的手性盐的物理化学特征,包括光谱性质,熔点,晶体形状,比旋度和在各种溶剂中的溶解度。这项研究提出了新的手性离子液体作为流动相添加剂对基于替考拉宁的手性固定相(CSP)上酸性对映体的手性识别的作用。基于范霍夫关系,确定了热力学函数。该图表明手性识别是由焓驱动的。所获得的手性盐在色谱系统中与基于替考拉宁的固定相表现出协同作用,从而提高了酸性对映体的分离度。新的基于萜烯的手性离子液体的结构任务特定性质已通过分子建模和对接模拟得到证实。

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