Dunkel Reinhard, Wu Xinzi
ScienceSoft LLC, 9934 Pinehurst Drive, Sandy, UT 84092, USA.
J Magn Reson. 2007 Sep;188(1):97-110. doi: 10.1016/j.jmr.2007.06.007. Epub 2007 Jun 30.
A compound is identified by matching its proton and/or carbon NMR spectra to NIH PubChem molecular structures. The matching process involves analyzing 1D proton, 1D carbon, DEPT, and/or HSQC spectra, and comparing the number of NMR resonances, detected proton and carbon shifts, likely number of methyl- and methoxy-groups, and an optionally specified molecular formula to predicted proton and carbon shifts of PubChem structures. A structure verification module rates the consistency between experimental spectral analysis results and a proposed structure (not limited to PubChem structures) and assigns observed shifts to the proposed structure. The spectral analysis, structure identification, and structure verification are largely automated in a software package and can be performed in minutes.
通过将其质子和/或碳核磁共振谱与美国国立医学图书馆(NIH)的化学物质数据库(PubChem)分子结构进行匹配来鉴定化合物。匹配过程包括分析一维质子谱、一维碳谱、无畸变极化转移增强谱(DEPT)和/或异核单量子相干谱(HSQC),并将核磁共振共振峰的数量、检测到的质子和碳化学位移、甲基和甲氧基的可能数量以及一个可选指定的分子式与PubChem结构预测的质子和碳化学位移进行比较。结构验证模块对实验光谱分析结果与提议结构(不限于PubChem结构)之间的一致性进行评分,并将观察到的化学位移指定给提议结构。光谱分析、结构鉴定和结构验证在一个软件包中基本实现自动化,几分钟内即可完成。