Noguchi Naoki, Shiraishi Yui, Kageyama Maho, Yokoi Yuu, Kurohama Saki, Okada Natsuki, Okamura Hidekazu
Graduate School of Technology, Industrial and Social Sciences, Tokushima University, 2-1 Minami-josanjima-cho, Tokushima 770-8506, Japan.
Phys Chem Chem Phys. 2023 Aug 23;25(33):22161-22170. doi: 10.1039/d3cp03096b.
The pressure-induced amorphization (PIA) of ice and clathrate hydrates occurs at temperatures significantly below their melting and decomposition points. The PIA of type I clathrate hydrates containing methane and ethane as guest molecules was investigated using Raman and infrared (IR) spectroscopy. With isothermal compression at 100 K, methane hydrate (MH) underwent PIA at 2-3.5 GPa, whereas ethane hydrate (EH) underwent PIA at 4.0-5.5 GPa. The type I clathrate structure consists of small (5) and large (56) cages. The Raman results revealed that the collapsed small and large cages in the amorphous forms of MH and EH were not distinguishable. The collapsed cages, including the methane and ethane molecules, were similar to the small and large cages, respectively. Their water networks were folded or expanded during the PIA process so that the cavity sizes of the collapsed cages were compatible with those of the guest molecules. Peaks in the IR spectra of crystalline MH assignable to the ro-vibrational transition of methane in large cages were observed in the C-H stretching wavenumber region below 40 K. The ro-vibrational IR band disappeared after amorphization, suggesting that the rotational motion of the methane molecule in the large cage was frozen by the collapse, as reported in previous dielectric spectroscopic and simulation studies. This study contributes to a better understanding of the changes in the local structure around guest molecules during PIA and the dynamics of the guest molecules.
冰和笼形水合物的压力诱导非晶化(PIA)发生在远低于其熔点和分解点的温度下。使用拉曼光谱和红外(IR)光谱研究了以甲烷和乙烷作为客体分子的I型笼形水合物的PIA。在100 K下进行等温压缩时,甲烷水合物(MH)在2 - 3.5 GPa下发生PIA,而乙烷水合物(EH)在4.0 - 5.5 GPa下发生PIA。I型笼形结构由小(5)笼和大(56)笼组成。拉曼结果表明,MH和EH非晶态形式中塌陷的小笼和大笼无法区分。塌陷的笼,分别包含甲烷和乙烷分子,与小笼和大笼相似。它们的水网络在PIA过程中发生折叠或扩展,使得塌陷笼的腔尺寸与客体分子的腔尺寸相匹配。在低于40 K的C - H伸缩波数区域观察到结晶MH的红外光谱中可归因于大笼中甲烷转动振动跃迁的峰。非晶化后转动振动红外带消失,这表明如先前介电光谱和模拟研究中所报道的,大笼中甲烷分子的转动运动因塌陷而被冻结。这项研究有助于更好地理解PIA过程中客体分子周围局部结构的变化以及客体分子的动力学。