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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Rotational spectroscopy of methyl benzoylformate and methyl mandelate: structure and internal dynamics of a model reactant and product of enantioselective reduction
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Rotational spectroscopy of methyl benzoylformate and methyl mandelate: structure and internal dynamics of a model reactant and product of enantioselective reduction

机译:苯甲酰甲酸甲酯和扁桃酸甲酯的旋转光谱:模型反应物和对映选择性还原产物的结构和内部动力学

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Pure rotational spectra of a prototypical prochiral ester, methyl benzoylformate (MBF), and the product of its enantioselective reduction, (R)-(-)-methyl mandelate (MM), were measured in the range of 5-16 GHz, using a cavity-based molecular beam Fourier-transform microwave spectrometer. Potential conformers were located using density functional theory calculations, and one conformer of each species was identified experimentally. The minimum energy conformer of MBF, in which the ester group is in a Z orientation, was observed for the first time. Based on an atoms-in-molecules analysis, MBF contains a weak CH center dot center dot center dot O-C hydrogen bond between the carbonyl oxygen atom of the ester group and the nearest hydrogen atom of the aromatic ring. In the minimum energy conformer of MM, the ester group is oriented to accommodate a hydrogen bond between the hydrogen atom of the hydroxyl group and the carbonyl oxygen atom (OH center dot center dot center dot O=C), rather than the sp(3) oxygen atom (OH center dot center dot center dot O-C). For both species, splittings of the rotational transitions were observed, which are attributed to methyl internal rotation, and the orientations and barrier heights of the methyl tops were determined precisely. The barrier heights for MBF and MM are 4.60(2) and 4.54(3) kJ mol(-1), respectively, which are consistent with values predicted by high-level wavefunction-based calculations. On the basis of an atoms-in-molecules analysis, we propose that destabilization of the sp(3) oxygen atom of the ester group most directly dictates the barrier height.
机译:在5至16 GHz的范围内使用质谱仪测量了原型手性酯甲基苯甲酰甲酸酯(MBF)及其对映选择性还原产物(R)-(-)-扁桃酸甲酯(MM)的纯旋转光谱。腔的分子束傅里叶变换微波光谱仪。使用密度泛函理论计算确定潜在的构象异构体,并通过实验鉴定出每个物种的一个构象异构体。首次观察到酯基为Z方向的MBF的最小能量构象体。基于分子中原子的分析,MBF在酯基的羰基氧原子和芳环的最近氢原子之间包含弱的CH中心点中心点中心点O-C氢键。在MM的最小能量构象异构体中,酯基的取向是为了容纳羟基的氢原子与羰基氧原子之间的氢键(OH中心点中心点中心点O = C)而不是sp(3 )氧原子(OH中心点中心点中心点OC)。对于这两个物种,观察到旋转过渡的分裂,这是由于甲基内部旋转引起的,并且精确确定了甲基顶部的取向和势垒高度。 MBF和MM的势垒高度分别为4.60(2)和4.54(3)kJ mol(-1),与通过基于高阶波函数的计算预测的值一致。基于分子中原子的分析,我们建议酯基的sp(3)氧原子的不稳定最直接地决定了势垒高度。

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