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Absolute Configurations of Synthetic Molecular Scaffolds from Vibrational CD Spectroscopy

机译:来自振动CD光谱的合成分子支架的绝对配置

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摘要

Vibrational circular dichroism (VCD) spectroscopy is one of the most powerful techniques for the determination of absolute configurations (AC), as it does not require any specific UV/vis chromophores, no chemical derivatization, and no growth of suitable crystals, In the past decade, it has become increasingly recognized by chemists from various fields of synthetic chemistry such as total synthesis and drug discovery as well as from developers of asymmetric catalysts. This perspective article gives an overview about the most important experimental aspects of a VCD-based AC determination and explains the theoretical analysis. The comparison of experimental and computational spectra that leads to the final conclusion about the AC of the target molecules is described. In addition, the review summarizes unique VCD studies carried out in the period 2008-2018 that focus on the determination of unknown ACs of new compounds, which were obtained in its enantiopure form either through direct asymmetric synthesis or chiral chromatography.
机译:振动圆二色性(VCD)光谱学是用于的绝对构型(AC)确定最强大的技术之一,因为它不要求任何特定的UV /可见发色团,没有化学衍生,和合适的晶体不生长,在过去的十年中,它已成为越来越化学家从合成化学的各个领域,如全合成和药物发现以及从非对称催化剂的开发人员识别。这种观点的文章提供了有关基于VCD-AC确定的最重要的实验方面的概述,并解释了理论分析。通向关于所述目标分子的AC最后的结论是所述的实验和计算光谱的比较。此外,综述在期间2008-2018进行独特VCD的研究,着眼于新的化合物,其是在它的对映体纯形式通过直接不对称合成或手性色谱法获得的未知ACS的判定。

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