University Institute of Bio-Organic Chemistry Antonio González, University of La Laguna, 38206, Tenerife, Spain.
Chemistry. 2013 Jun 24;19(26):8525-32. doi: 10.1002/chem.201204272. Epub 2013 May 6.
The structural determination of small organic molecules is mainly undertaken by using NMR techniques, although it is increasingly supplemented by using computational methods. NMR parameters, such as chemical shifts and coupling constants, are extremely sensitive indicators of local molecular conformation and are a source of structural evidence. However, their interpretation is fairly challenging in many circumstances, such as the case of the new polyether squalene derivative nivariol, the structure of which was elucidated by means of NMR spectroscopy and DFT calculations. The potential flexibility of this molecule and the high number of quaternary carbon atoms that it contains make its configurational assignment very difficult. Moreover, the relative configuration of four separated stereoclusters was established and subsequently connected by using NOE and J-based analysis, as well as by a comparison of its experimental (13)C NMR chemical shifts with the corresponding population-weighted values, as calculated by using DFT methods. Limitations of these used approaches became apparent but were overcome by combining the two methods.
小分子的结构测定主要采用 NMR 技术,但也越来越多地采用计算方法进行补充。NMR 参数,如化学位移和偶合常数,是局部分子构象的极其敏感的指标,也是结构证据的来源。然而,在许多情况下,它们的解释相当具有挑战性,例如新型聚醚角鲨烯衍生物 nivariol 的情况,其结构是通过 NMR 光谱和 DFT 计算阐明的。该分子的潜在灵活性和它所包含的大量季碳原子使其构象分配非常困难。此外,通过使用 NOE 和基于 J 的分析以及将其实验(13)C NMR 化学位移与通过 DFT 方法计算的相应加权值进行比较,确定了四个分离的立体簇的相对构型,并随后将其连接起来。但是,通过结合这两种方法,可以克服这些方法的局限性。