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A ~13C solid-state NMR investigation of four cocrystals of caffeine and theophylline

机译:A〜13C固态NMR调查咖啡因和茶碱的四个酰胺

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We report an analysis of the ~13C solid-state NMR chemical shift data in a series of four cocrystals involving two active pharmaceutical ingredient (API) mimics (caffeine and theophylline) and two diacid coformers (malonic acid and glutaric acid). Within this controlled set, we make comparisons of the isotropic chemical shifts and the principal values of the chemical shift tensor. The dispersion at 14.1 T (600 MHz ~1H) shows crystallographic splittings in some of the resonances in the magic angle spinning spectra. By comparing the isotropic chemical shifts of individual C atoms across the four cocrystals, we are able to identify pronounced effects on the local electronic structure at some sites. We perform a similar analysis of the principal values of the chemical shift tensors for the anisotropic C atoms (most of the ring C atoms for the API mimics and the carbonyl C atoms of the diacid coformers) and link them to differences in the known crystal structures. We discuss the future prospects for extending this type of study to incorporate the full chemical shift tensor, including its orientation in the crystal frame of reference.
机译:我们报告了涉及两个活性药物成分(API)模拟(咖啡因和茶碱)和两种二酸和戊二酸)的四个钴晶系列〜13C固态NMR化学换档数据的分析。在该控制的组中,我们进行了各向同性化学换档的比较和化学换档张量的主要值。在14.1t(600mHz〜1h)下的分散显示在魔法角度纺丝光谱中的一些共振中的晶形分裂。通过将单个C原子的各向同性化学位移与四个COCrystals进行比较,我们能够在某些地点识别对本地电子结构的明显影响。我们对各向异性C原子的化学移位张量的主要值进行了类似的分析(对于API模拟物的大多数环C原子和二甲酰焦型的羰基c原子)并将它们与已知晶体结构的差异联系起来。我们讨论了扩展这种研究的未来前景,以纳入完整的化学换档张量,包括其在晶体框架中的方向。

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