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手性光学活性 (2) H6 -新戊烷的合成与立体化学归属。

Synthesis and Stereochemical Assignment of Crypto-Optically Active (2) H6 -Neopentane.

机构信息

The Mallat Family Laboratory of Organic Chemistry, Schulich Faculty of Chemistry and the Lise Meitner-Minerva Center for Computational Quantum Chemistry, Technion-Israel Institute of Technology, Haifa, 32000 (Israel).

Institute of Organic Chemistry, Justus-Liebig University, Heinrich-Buff-Ring 58, 35392 Giessen (Germany).

出版信息

Angew Chem Int Ed Engl. 2015 Oct 26;54(44):13106-9. doi: 10.1002/anie.201505349. Epub 2015 Sep 7.

Abstract

The determination of the absolute configuration of chiral molecules is at the heart of asymmetric synthesis. Here we probe the spectroscopic limits for chiral discrimination with NMR spectroscopy in chiral aligned media and with vibrational circular dichroism spectroscopy of the sixfold-deuterated chiral neopentane. The study of this compound presents formidable challenges since its stereogenicity is only due to small mass differences. For this purpose, we selectively prepared both enantiomers of (2) H6 -1 through a concise synthesis utilizing multifunctional intermediates. While NMR spectroscopy in chiral aligned media could be used to characterize the precursors to (2) H6 -1, the final assignment could only be accomplished with VCD spectroscopy, despite the fleetingly small dichroic properties of 1. Both enantiomers were assigned by matching the VCD spectra with those computed with density functional theory.

摘要

手性分子的绝对构型的确定是不对称合成的核心。在这里,我们通过手性取向介质中的 NMR 光谱和六氘代手性新戊烷的振动圆二色性光谱来探测手性分辨的光谱学极限。由于其立体异构性仅归因于质量差异较小,因此研究该化合物具有很大的挑战性。为此,我们通过利用多功能中间体的简洁合成,有选择性地制备了(2)H6-1 的两种对映异构体。尽管 1 的圆二色性性质很短暂,但尽管 NMR 光谱在手性取向介质中可用于表征(2)H6-1 的前体,但最终的分配只能通过 VCD 光谱完成。通过将 VCD 光谱与用密度泛函理论计算的光谱相匹配,确定了两种对映异构体。

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