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基于一维(1)H NMR和二维(1)H - (13)C HSQC谱相结合的自动结构验证。

Automated structure verification based on a combination of 1D (1)H NMR and 2D (1)H - (13)C HSQC spectra.

作者信息

Golotvin Sergey S, Vodopianov Eugene, Pol Rostislav, Lefebvre Brent A, Williams Antony J, Rutkowske Randy D, Spitzer Timothy D

机构信息

Advanced Chemistry Development, Inc., Moscow Department, 6 Akademik Bakulev Street, Moscow 117513, Russian Federation.

出版信息

Magn Reson Chem. 2007 Oct;45(10):803-13. doi: 10.1002/mrc.2034.

Abstract

A method for structure validation based on the simultaneous analysis of a 1D (1)H NMR and 2D (1)H - (13)C single-bond correlation spectrum such as HSQC or HMQC is presented here. When compared with the validation of a structure by a 1D (1)H NMR spectrum alone, the advantage of including a 2D HSQC spectrum in structure validation is that it adds not only the information of (13)C shifts, but also which proton shifts they are directly coupled to, and an indication of which methylene protons are diastereotopic. The lack of corresponding peaks in the 2D spectrum that appear in the 1D (1)H spectrum, also gives a clear picture of which protons are attached to heteroatoms. For all these benefits, combined NMR verification was expected and found by all metrics to be superior to validation by 1D (1)H NMR alone. Using multiple real-life data sets of chemical structures and the corresponding 1D and 2D data, it was possible to unambiguously identify at least 90% of the correct structures. As part of this test, challenging incorrect structures, mostly regioisomers, were also matched with each spectrum set. For these incorrect structures, the false positive rate was observed as low as 6%.

摘要

本文介绍了一种基于一维(1)H NMR和二维(1)H-(13)C单键相关谱(如HSQC或HMQC)同时分析的结构验证方法。与仅通过一维(1)H NMR谱验证结构相比,在结构验证中纳入二维HSQC谱的优势在于,它不仅增加了(13)C化学位移的信息,还增加了与之直接耦合的质子化学位移的信息,以及哪些亚甲基质子是非对映异位的指示。一维(1)H谱中出现而二维谱中没有相应峰的情况,也清楚地显示了哪些质子与杂原子相连。基于所有这些优点,综合核磁共振验证在所有指标上都优于仅通过一维(1)H NMR进行的验证。使用多个化学结构的实际数据集以及相应的一维和二维数据,能够明确识别至少90%的正确结构。作为该测试的一部分,具有挑战性的错误结构(主要是区域异构体)也与每个光谱集进行了匹配。对于这些错误结构,观察到的假阳性率低至6%。

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