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Theoretical study on chiral recognition mechanism of methyl mandelate enantiomers on permethylated β-cyclodextrin

机译:扁桃酸甲酯对映体对全甲基化β-环糊精的手性识别机理的理论研究

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摘要

Host-guest interactions of permethylated β-cyclodextrin (PM-β-CD) with methyl mandelate enantiomers ((R/S)-MMA) were simulated using semiempirical PM3 and ONIOM (B3LYP/6-31G(d):PM3) method. The chiral recognition mechanism of (R/S)-MMA enantiomers on PM-β-CD was investigated. The binding energies for all orientations considered in this research are reported. The most stable geometry structures of the two complexes are different. The benzene ring of (R)-MMA locates horizontally approximately on the wider edge of the PM-β-CD cavity, but the aromatic ring of (S)-MMA is deeply included into the hydrophobic cavity. Furthermore, the results of NBO analysis show that the main driving forces in the inclusion process of PM-β-CD with (R/S)-MMA are hydrogen bonding interaction, dipole-dipole interaction, charge-transfer and hydrophobic interaction. The stabilization energy of the (R)-MMA/PM-β-CD complex is lower than that of the (S)-MMA/PM-β-CD complex. Moreover, the chiral carbon in MMA of (R/S)-MMA/PM-β-CD complexes are close to the C2 and C3 in the glucose unit. The chiral recognition mechanism is thus closely related to the chiral environment provided by C2 and C3 in the glucose unit and the degree of (R/S)-MMA and PM-β-CD inclusion.
机译:使用半经验PM3和ONIOM(B3LYP / 6-31G(d):PM3)方法模拟了全甲基化β-环糊精(PM-β-CD)与扁桃酸甲酯对映体((R / S)-MMA)的宿主-客体相互作用。研究了(R / S)-MMA对映体在PM-β-CD上的手性识别机理。报告了本研究中考虑的所有方向的结合能。两种配合物最稳定的几何结构是不同的。 (R)-MMA的苯环大约水平地位于PM-β-CD腔的较宽边缘,但是(S)-MMA的芳环深深地包含在疏水腔中。此外,NBO分析的结果表明,PM-β-CD与(R / S)-MMA的包合过程的主要驱动力是氢键相互作用,偶极-偶极相互作用,电荷转移和疏水相互作用。 (R)-MMA /PM-β-CD络合物的稳定能低于(S)-MMA /PM-β-CD络合物的稳定能。此外,(R / S)-MMA /PM-β-CD络合物的MMA中的手性碳在葡萄糖单元中接近C2和C3。因此,手性识别机制与葡萄糖单元中C2和C3所提供的手性环境以及(R / S)-MMA和PM-β-CD夹杂度密切相关。

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