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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Enantioselective separation of twelve pairs of enantiomers on polysaccharide-based chiral stationary phases and thermodynamic analysis of separation mechanism
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Enantioselective separation of twelve pairs of enantiomers on polysaccharide-based chiral stationary phases and thermodynamic analysis of separation mechanism

机译:二糖基对映体对多糖的手性静止阶段的映选择性分离及分离机制热力学分析

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摘要

The enantioseparation of twelve pairs of structurally related 1-aryl-1-indanone derivatives was studied in the normal-phase mode using three different polysaccharide-type chiral stationary phases, namely Chiralpak IB, Chiralpak IC, and Chiralpak ID. n-Hexane/2-propanol and n-hexane/ethanol were employed as mobile phases. Among all the investigated chiral columns, Chiralpak IC exhibited the most universal and the best enantioseparation ability toward all the racemates, particularly with the mobile phase composed of n-hexane/2-propanol (90/10, v/v). Then the effects of column temperature on retention and enantioselectivity were examined in the range of 25-40 degrees C. Satisfactory enantioseparation was obtained at ambient temperature. The natural logarithm of retention and separation factors (ln k and ln ) versus the reciprocal of absolute temperature (1/T) (Van't Hoff plots) were found to be linear for all racemates, indicating that the retention and separation mechanisms were independent of temperature in the range investigated. Then, the thermodynamic parameters (H degrees, S degrees, and G degrees) were calculated from Van't Hoff plots. These values indicated that the solute transfer from the mobile to stationary phase was enthalpically favorable, and the process of enantioseparation was mainly enthalpy controlled. At last, the impact of small changes in molecular structures of the tested 1-indanone derivatives on enantioseparation was also discussed.
机译:的12双结构相关的1-芳基-1-茚满酮衍生物的对映体中使用三个不同的多糖型手性固定相,即CHIRALPAK IB,IC CHIRALPAK和CHIRALPAK ID正相模式进行了研究。正己烷/ 2-丙醇和正 - 己烷/乙醇作为流动相。在所有的研究手性柱,CHIRALPAK IC表现出最普遍的和对所有外消旋物最好对映体分离能力,特别是用正己烷/ 2-丙醇组成的流动相(90/10,体积/体积)。然后在25-40℃下对映体令人满意的范围内进行了检查上保持和对映选择性柱温度的影响在室温下获得的。的保留和分离因子的自然对数(LN k和LN)与绝对温度(1 / T)的倒数(范特霍夫地块)被认为是线性的所有外消旋体,表明保留和分离机构是独立的在温度范围内的影响。然后,热力学参数(H度,S程度,和G度)从范特霍夫图计算。这些值表明,从移动到固定相溶质转移是焓良好,对映体的过程中,主要是焓控制。最后,在对映体上的测试-1-二氢茚酮衍生物的分子结构的小变化的影响进行了讨论。

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