Graduate School of Human Development and Environment, Kobe University, 3-11 Tsurukabuto, Nada, Kobe 657-8501, Japan.
Institute for Molecular Science (IMS), 38 Nishigonaka, Myodaiji, Okazaki 444-8585, Japan.
Molecules. 2022 Jul 25;27(15):4743. doi: 10.3390/molecules27154743.
Semi-clathrate hydrates are attractive heat storage materials because the equilibrium temperatures, located above 0 °C in most cases, can be changed by selecting guest cations and anions. The equilibrium temperatures are influenced by the size and hydrophilicity of guest ions, hydration number, crystal structure, and so on. This indicates that intermolecular and/or interionic interaction in the semi-clathrate hydrates may be related to the variation of the equilibrium temperatures. Therefore, intermolecular and/or interionic interaction in semi-clathrate hydrates with quaternary onium salts was directly observed using low-frequency Raman spectroscopy, a type of terahertz spectroscopy. The results show that Raman peak positions were mostly correlated with the equilibrium temperatures: in the semi-clathrate hydrates with higher equilibrium temperatures, Raman peaks around 65 cm appeared at a higher wavenumber and the other Raman peaks at around 200 cm appeared at a lower wavenumber. Low-frequency Raman observation is a valuable tool with which to study the equilibrium temperatures in semi-clathrate hydrates.
半笼形水合物是有吸引力的储热材料,因为其平衡温度在大多数情况下高于 0°C,可以通过选择客体阳离子和阴离子来改变。平衡温度受客体离子的大小和亲水性、水合数、晶体结构等因素的影响。这表明半笼形水合物中的分子间和/或离子间相互作用可能与平衡温度的变化有关。因此,使用太赫兹光谱的一种——低频拉曼光谱,直接观察了具有季铵盐的半笼形水合物中的分子间和/或离子间相互作用。结果表明,拉曼峰位置大多与平衡温度相关:在平衡温度较高的半笼形水合物中,约 65cm 的拉曼峰出现在较高的波数处,而约 200cm 的其他拉曼峰出现在较低的波数处。低频拉曼观测是研究半笼形水合物中平衡温度的一种有价值的工具。