首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Stability and Vibrations of Guest Molecules in the Type II Clathrate Hydrate: A First-Principles Study of Solid Phase
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Stability and Vibrations of Guest Molecules in the Type II Clathrate Hydrate: A First-Principles Study of Solid Phase

机译:II型笼形水合物中客体分子的稳定性和振动:固相的第一性原理研究

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摘要

Natural gas mixtures are inclusion compounds composed of major light hydrocarbon gaseous molecules (CH4, C2H6, C3H6, and C3H8). Previous ab initio calculations were mainly limited by the cluster models. For the first time, we report first-principles calculations on the stability and vibrational properties of the gas molecules inside the crystalline lattice of type II clathrate. In accordance with our calculations, the larger the size of guest molecule, the more stable the clathrate hydrate for small-sized alkane guest molecules (CnHm, n <= 3, m <= 8). The interaction energy per guest molecule gradually increases as the number of guest molecules increase for both sII pure and sII mixed hydrates. In addition, the vibrational frequencies of guest molecules trapped in sII hydrate are also simulated. The C-C stretching frequency shows a blue shift as the amount of guest molecules increase. Our theoretical results prove to be valuable insight for identifying the types of guest molecules from experimental spectroscopic data.
机译:天然气混合物是由主要的轻烃气态分子(CH4,C2H6,C3H6和C3H8)组成的夹杂物。先前的从头算起的计算主要受群集模型的限制。我们首次报告了关于II型笼形晶体晶格内部气体分子的稳定性和振动特性的第一性原理计算。根据我们的计算,客体分子的尺寸越大,对于小尺寸烷烃客体分子(CnHm,n <= 3,m <= 8)的笼形水合物越稳定。对于sII纯水合物和sII混合水合物,随着客体分子数量的增加,每个客体分子的相互作用能逐渐增加。此外,还模拟了捕获在sII水合物中的客体分子的振动频率。 C-C拉伸频率随着客体分子数量的增加而呈现蓝移。我们的理论结果证明对从实验光谱数据中鉴定客体分子的类型具有宝贵的见解。

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