Do Changwoo, Sun Xiao-Guang, Jafta Charl J, Dai Sheng, Ohl Michael, Mamontov Eugene
Neutron Scattering Division, Oak Ridge National Laboratory, Oak Ridge, TN, 37831, USA.
Chemical Science Division, Oak Ridge National Laboratory, Oak Ridge, TN, 37831, USA.
Sci Rep. 2018 Jul 9;8(1):10354. doi: 10.1038/s41598-018-28756-5.
We probe, for the first time, quantum tunneling in the methyl groups of the ionic liquid [DMIm][TFSI] facilitated by the presence of Bis(trifluoromethane)sulfonimide lithium salt. The observation of tunneling is made possible by crystallization, rather than vitrification, of [DMIm][TFSI] at low temperature. Neutron scattering measurements detect quantum tunneling excitations at ~27 μeV at temperatures below 30 K in the presence of LiTFSI at a concentration of 1 mol/kg, but not in salt-free [DMIm][TFSI]. This indicates that the methyl rotational potential barrier is reduced by the presence of LiTFSI, thus bringing the tunneling excitations into the measurable range. The salt-induced reduction of the rotational barrier is corroborated by quasi-elastic scattering data associated with stochastic re-orientation of methyl groups measured between 40 and 60 K.
我们首次探究了在双(三氟甲烷)磺酰亚胺锂盐存在下,离子液体[DMIm][TFSI]甲基基团中的量子隧穿现象。通过在低温下使[DMIm][TFSI]结晶而非玻璃化,才得以观察到隧穿现象。中子散射测量发现在1 mol/kg的LiTFSI存在下,温度低于30 K时,在约27 μeV处检测到量子隧穿激发,但在无盐的[DMIm][TFSI]中未检测到。这表明LiTFSI的存在降低了甲基旋转势垒,从而使隧穿激发进入可测量范围。在40至60 K之间测量的与甲基随机重新取向相关的准弹性散射数据证实了盐诱导的旋转势垒降低。