论文标题
水对分子晶体的THZ振动光谱特征的影响
On the influence of water on THz vibrational spectral features of molecular crystals
论文作者
论文摘要
分子组件的纳米级结构在许多($ $ $)的生物学机制中起主要作用。分子晶体是这些组件中最简单的晶体之一,广泛用于从药品和农业化学物质到营养和化妆品的各种应用中。可以使用Terahertz光谱探测此类分子晶体中的集体振动,从而提供独特的特征光谱指纹。但是,光谱特征与晶体构象,晶相及其环境的关联是一项艰巨的任务。我们提出了一项关于水在乳糖分子晶体中掺入水的合并计算研究研究,并展示了如何使用模拟将THZ区域的光谱特征与晶体构象和相位相关联。使用乳糖分子晶体的周期性DFT模拟,阐明了水在观察到的乳糖Thz光谱中的作用,从而表现出直接和间接的贡献。构建了特定的实验设置,以允许样品的受控加热和相应的脱水,从而提供了晶相变动力学的监测。除了观察到,乳糖阶段和相变的观察似乎比以前认为在单相中的几种晶体形式以及在所谓无水相位阶段中不可忽略的水含量更为复杂。首先,THZ模式分布在多个分子上,需要定期计算而不是气相。其次,水合水不仅发挥了扰动作用,而且还参与了THZ振动的促进。
The nanoscale structure of molecular assemblies plays a major role in many ($μ$)-biological mechanisms. Molecular crystals are one of the most simple of these assemblies and are widely used in a variety of applications from pharmaceuticals and agrochemicals, to nutraceuticals and cosmetics. The collective vibrations in such molecular crystals can be probed using terahertz spectroscopy, providing unique characteristic spectral fingerprints. However, the association of the spectral features to the crystal conformation, crystal phase and its environment is a difficult task. We present a combined computationalexperimental study on the incorporation of water in lactose molecular crystals, and show how simulations can be used to associate spectral features in the THz region to crystal conformations and phases. Using periodic DFT simulations of lactose molecular crystals, the role of water in the observed lactose THz spectrum is clarified, presenting both direct and indirect contributions. A specific experimental setup is built to allow the controlled heating and corresponding dehydration of the sample, providing the monitoring of the crystal phase transformation dynamics. Besides the observation that lactose phases and phase transformation appear to be more complex than previously thoughtincluding several crystal forms in a single phase and a non-negligible water content in the so-called anhydrous phasewe draw two main conclusions from this study. Firstly, THz modes are spread over more than one molecule and require periodic computation rather than a gas-phase one. Secondly, hydration water does not only play a perturbative role but also participates in the facilitation of the THz vibrations.