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在高达 30 GPa 的高压下原位观察低熔点离子液体 [BMIM][BF4]中的多相转变。

In situ observation of multiple phase transitions in low-melting ionic liquid [BMIM][BF4] under high pressure up to 30 GPa.

机构信息

The High Pressure Research Center of Science and Technology, Zhengzhou University of Light Industry, Zhengzhou 450002, China.

出版信息

J Phys Chem B. 2012 Feb 23;116(7):2216-22. doi: 10.1021/jp2108939. Epub 2012 Feb 8.

Abstract

In situ characterization of phase transitions and direct microscopic observations of a low-melting ionic liquid, 1-butyl-3-methyl imidazolium tetrafluoroborate ([BMIM][BF(4)]), has been performed in detail by Raman spectroscopy. Compression of [BMIM][BF(4)] was measured under hydrostatic pressure up to ~30.0 GPa at room temperature by using a high-pressure diamond anvil cell. With pressure increasing, the characteristic bands of [BMIM][BF(4)] displayed nonmonotonic pressure-induced frequency shifts, and it is found to undergo four successive phase transitions at around 2.25, 6.10, 14.00, and 21.26 GPa. Especially, above a pressure of 21.26 GPa, luminescence of the sample occurs, which is connected with the most significant phase transition at around this pressure. It was indicated that the structure change under high pressure might be associated with a conformational change in the butyl chain. Upon releasing pressure, the spectrum was not recovered under a pressure up to 1.16 GPa, thereby indicating that this high-pressure phase remains stable over a large pressure range between 30 and 1.16 GPa in low-melting ionic liquid [BMIM][BF(4)]. Although the sample was kept under the normal pressure for 24 h, the spectrum was recovered, and it showed that the phase transition of [BMIM][BF(4)] was reversible. In other words, such a low-melting ionic liquid [BMIM][BF(4)] remains stable even after being treated under so a high pressure of up to 30 GPa.

摘要

通过拉曼光谱详细地对低熔点离子液体 1-丁基-3-甲基咪唑四氟硼酸盐 ([BMIM][BF(4)]) 的相变进行了原位表征和直接微观观察。在室温下,使用高压金刚石砧细胞将 [BMIM][BF(4)] 在静水压力下压缩至约 30.0 GPa。随着压力的增加,[BMIM][BF(4)] 的特征带显示出非单调的压力诱导频率位移,并且发现它在大约 2.25、6.10、14.00 和 21.26 GPa 处经历了四个连续的相变。特别是,在压力高于 21.26 GPa 时,样品发生发光,这与该压力下最显著的相变有关。表明高压下的结构变化可能与丁基链的构象变化有关。在释放压力时,在高达 1.16 GPa 的压力下,光谱未被回收,从而表明在低熔点离子液体 [BMIM][BF(4)] 中,这种高压相在 30 到 1.16 GPa 之间的较大压力范围内保持稳定。尽管在常压下将样品保持 24 小时,但光谱得到恢复,表明 [BMIM][BF(4)] 的相变是可逆的。换句话说,即使在高达 30 GPa 的高压下处理,这种低熔点离子液体 [BMIM][BF(4)] 也保持稳定。

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