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使用 O 和 H 核磁共振分析研究布洛芬和对苯二甲酸的分子晶体动力学。

Looking into the dynamics of molecular crystals of ibuprofen and terephthalic acid using O and H nuclear magnetic resonance analyses.

机构信息

ICGM, Univ Montpellier, CNRS, ENSCM, Montpellier, France.

PhoenixNMR, Loveland, Colorado, USA.

出版信息

Magn Reson Chem. 2021 Sep;59(9-10):975-990. doi: 10.1002/mrc.5141. Epub 2021 May 6.

Abstract

Oxygen-17 and deuterium are two quadrupolar nuclei that are of interest for studying the structure and dynamics of materials by solid-state nuclear magnetic resonance (NMR). Here, O and H NMR analyses of crystalline ibuprofen and terephthalic acid are reported. First, improved O-labelling protocols of these molecules are described using mechanochemistry. Then, dynamics occurring around the carboxylic groups of ibuprofen are studied considering variable temperature O and H NMR data, as well as computational modelling (including molecular dynamics simulations). More specifically, motions related to the concerted double proton jump and the 180° flip of the H-bonded (-COOH) unit in the crystal structure were looked into, and it was found that the merging of the C=O and C-OH O resonances at high temperatures cannot be explained by the sole presence of one of these motions. Lastly, preliminary experiments were performed with a H- O diplexer connected to the probe. Such configurations can allow, among others, H and O NMR spectra to be recorded at different temperatures without needing to tune or to change probe configurations. Overall, this work offers a few leads which could be of use in future studies of other materials using O and H NMR.

摘要

氧-17 和氘是两种四极核,通过固态核磁共振(NMR)研究材料的结构和动力学非常有趣。本文报道了结晶布洛芬和对苯二甲酸的 O 和 H NMR 分析。首先,使用机械化学方法对这些分子的 O 标记方案进行了改进。然后,考虑到 O 和 H NMR 数据以及计算建模(包括分子动力学模拟),研究了布洛芬羧酸基团周围的动力学。具体而言,研究了与协同双质子跳跃和氢键(-COOH)单元在晶体结构中的 180°翻转相关的运动,结果发现,在高温下 C=O 和 C-OH O 共振的合并不能仅由这些运动之一的存在来解释。最后,与探头连接的 H-O 双工器进行了初步实验。这样的配置除其他外,可以允许在不同温度下记录 H 和 O NMR 光谱,而无需调整或改变探头配置。总的来说,这项工作为未来使用 O 和 H NMR 研究其他材料提供了一些线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44da/8518726/84e8732a96f6/MRC-59-975-g002.jpg

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