Nguyen K Lien, Friscić Tomislav, Day Graeme M, Gladden Lynn F, Jones William
Department of Chemical Engineering, University of Cambridge, Pembroke Street, Cambridge CB2 3RA, UK.
Nat Mater. 2007 Mar;6(3):206-9. doi: 10.1038/nmat1848. Epub 2007 Feb 25.
Terahertz (THz) radiation probes intermolecular interactions through crystal lattice vibrations, allowing the characterization of solid materials. Thus, THz spectroscopy is a promising alternative to mainstream solid-state analytical tools such as X-ray diffraction or thermal analysis. The method provides the benefits of online measurement, remote sampling and three-dimensional imaging, all of which are attractive for quality control and security applications. In the context of pharmaceutical solids, THz spectroscopy can differentiate and quantify different forms of active pharmaceutical ingredients. Here, we apply this technique to monitor a dynamic process involving two molecular crystals. In particular, we follow the mechanochemical construction of a two-component cocrystal by grinding together phenazine (phen) and mesaconic acid (mes). To rationalize the observed changes in the spectra, we conduct lattice dynamics calculations that lead to the tentative assignment of at least one feature in the cocrystal THz spectrum.
太赫兹(THz)辐射通过晶格振动探测分子间相互作用,从而能够对固体材料进行表征。因此,太赫兹光谱学是诸如X射线衍射或热分析等主流固态分析工具的一种有前景的替代方法。该方法具有在线测量、远程采样和三维成像的优点,所有这些对于质量控制和安全应用都具有吸引力。在药物固体的背景下,太赫兹光谱学可以区分和量化活性药物成分的不同形式。在此,我们应用该技术来监测一个涉及两种分子晶体的动态过程。具体而言,我们通过将吩嗪(phen)和甲基丙烯酸(mes)一起研磨,跟踪两组分共晶体的机械化学构建过程。为了合理解释光谱中观察到的变化,我们进行了晶格动力学计算,这导致了对共晶体太赫兹光谱中至少一个特征的初步归属。