Suppr超能文献

药物化合物的固态 17O NMR:水杨酸和阿司匹林。

Solid-state 17O NMR of pharmaceutical compounds: salicylic acid and aspirin.

机构信息

Department of Chemistry, Queen's University, Kingston, Ontario, Canada.

出版信息

J Phys Chem B. 2013 Aug 22;117(33):9643-54. doi: 10.1021/jp405233f. Epub 2013 Aug 8.

Abstract

We report solid-state NMR characterization of the (17)O quadrupole coupling (QC) and chemical shift (CS) tensors in five site-specifically (17)O-labeled samples of salicylic acid and o-acetylsalicylic acid (Aspirin). High-quality (17)O NMR spectra were obtained for these important pharmaceutical compounds under both static and magic angle spinning (MAS) conditions at two magnetic fields, 14.0 and 21.1 T. A total of 14 (17)O QC and CS tensors were experimentally determined for the seven oxygen sites in salicylic acid and Aspirin. Although both salicylic acid and Aspirin form hydrogen bonded cyclic dimers in the solid state, we found that the potential curves for the concerted double proton transfer in these two compounds are significantly different. In particular, while the double-well potential curve in Aspirin is nearly symmetrical, it is highly asymmetrical in salicylic acid. This difference results in quite different temperature dependencies in (17)O MAS spectra of the two compounds. A careful analysis of variable-temperature (17)O MAS NMR spectra of Aspirin allowed us to obtain the energy asymmetry (ΔE) of the double-well potential, ΔE = 3.0 ± 0.5 kJ/mol. We were also able to determine a lower limit of ΔE for salicylic acid, ΔE > 10 kJ/mol. These asymmetrical features in potential energy curves were confirmed by plane-wave DFT computations, which yielded ΔE = 3.7 and 17.8 kJ/mol for Aspirin and salicylic acid, respectively. To complement the solid-state (17)O NMR data, we also obtained solid-state (1)H and (13)C NMR spectra for salicylic acid and Aspirin. Using experimental NMR parameters obtained for all magnetic nuclei present in salicylic acid and Aspirin, we found that plane-wave DFT computations can produce highly accurate NMR parameters in well-defined crystalline organic compounds.

摘要

我们报告了通过固态 NMR 对五种(17)O 标记的水杨酸和邻乙酰水杨酸(阿司匹林)的局部(17)O 核四极耦合(QC)和化学位移(CS)张量进行的表征。在两个磁场(14.0 和 21.1 T)下,在静态和魔角旋转(MAS)条件下,都获得了这些重要药物化合物的高质量(17)NMR 谱。共测定了水杨酸和阿司匹林中 7 个氧位的 14 个(17)O QC 和 CS 张量。尽管水杨酸和阿司匹林在固态下都形成氢键环状二聚体,但我们发现这两种化合物中协同双质子转移的势垒曲线明显不同。特别是,尽管阿司匹林中的双势阱曲线几乎是对称的,但在水杨酸中却是高度不对称的。这种差异导致这两种化合物的(17)O MAS 谱在温度依赖性方面有很大的不同。对阿司匹林的变温(17)O MAS NMR 谱的仔细分析使我们能够获得双势阱势垒的能量不对称性(ΔE),ΔE = 3.0 ± 0.5 kJ/mol。我们还能够确定水杨酸的ΔE 的下限,ΔE > 10 kJ/mol。这些势能曲线的不对称特征通过平面波 DFT 计算得到了证实,阿司匹林和水杨酸的计算结果分别为ΔE = 3.7 和 17.8 kJ/mol。为了补充固态(17)O NMR 数据,我们还获得了水杨酸和阿司匹林的固态(1)H 和(13)C NMR 谱。使用在水杨酸和阿司匹林中存在的所有磁核获得的实验 NMR 参数,我们发现平面波 DFT 计算可以在明确定义的结晶有机化合物中产生高度准确的 NMR 参数。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验