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圆二色光谱法和密度泛函理论计算用于确定共轭肟的绝对构型和E/Z异构体。

Circular dichroism spectroscopy and DFT calculations in determining absolute configuration and E/Z isomers of conjugated oximes.

作者信息

Rode Joanna E, Frelek Jadwiga

机构信息

Institute of Organic Chemistry, Polish Academy of Sciences, Warsaw, Poland.

出版信息

Chirality. 2017 Nov;29(11):653-662. doi: 10.1002/chir.22750. Epub 2017 Aug 31.

DOI:10.1002/chir.22750
PMID:28857367
Abstract

The primary purpose of this work was to demonstrate the suitability of circular dichroism (CD) spectroscopy in stereochemical studies of α,β-unsaturated oximes, with particular emphasis on determination of E and Z geometry of the oxime double bond. As models for this study, O-phenyl and O-triphenylmethyl (trityl) oximes of 4-hydroxy-2-methylcyclopent-2-en-1-one were selected. These model compounds differ in both absolute configuration at C4 carbon atom and E-Z configuration of the oxime double bond. The basic dichroic technique applied was electronic circular dichroism (ECD) assisted by quantum-chemical calculations and vibrational circular dichroism (VCD) for selected cases. Such an approach enabled effective implementation of both goals. Thus, we were able to associate the signs of Cotton effects in the range of 190-240 nm with the absolute configuration at C4 and within 240-300 nm with the E- or Z-geometry of the oxime double bond. Within this work, optical activity of the protecting trityl group was also studied towards formation of the propeller-shaped conformations by using the same combined CD/DFT methodology. As shown, the helical structure of the trityl group has a considerable influence on the ECD spectra. However, the MPM and PMP conformers of the trityl group are in fact almost equally populated in the conformational equilibrium, making it impossible to distinguish them. On the other hand, rotamers of the hydroxyl group at C4 show a decisive impact on the VCD spectra in both phenoxy and trityl oximes.

摘要

这项工作的主要目的是证明圆二色光谱(CD)在α,β-不饱和肟的立体化学研究中的适用性,特别强调肟双键E和Z构型的测定。作为该研究的模型,选择了4-羟基-2-甲基环戊-2-烯-1-酮的O-苯基和O-三苯甲基(三苯甲基)肟。这些模型化合物在C4碳原子的绝对构型和肟双键的E-Z构型上均有所不同。所应用的基本二色性技术是电子圆二色光谱(ECD),并辅以量子化学计算,对于选定的情况还采用了振动圆二色光谱(VCD)。这种方法能够有效地实现两个目标。因此,我们能够将190 - 240 nm范围内的科顿效应的符号与C4处的绝对构型相关联,并将240 - 300 nm范围内的符号与肟双键的E-或Z-构型相关联。在这项工作中,还使用相同的CD/DFT组合方法研究了保护三苯甲基基团的光学活性对螺旋桨状构象形成的影响。结果表明,三苯甲基基团的螺旋结构对ECD光谱有相当大的影响。然而,三苯甲基基团的MPM和PMP构象异构体在构象平衡中实际上几乎以相同的比例存在,因此无法区分它们。另一方面,C4处羟基的旋转异构体对苯氧基肟和三苯甲基肟的VCD光谱都有决定性影响。

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