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首页> 外文期刊>Scientific reports. >Methyl quantum tunneling in ionic liquid [DMIm][TFSI] facilitated by Bis(trifluoromethane)sulfonimide lithium salt
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Methyl quantum tunneling in ionic liquid [DMIm][TFSI] facilitated by Bis(trifluoromethane)sulfonimide lithium salt

机译:双(三氟甲烷)磺酰亚胺锂盐促进离子液体[DMIm] [TFSI]中的甲基量子隧穿

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摘要

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.
机译:我们首次探究了双(三氟甲烷)磺酰亚胺锂盐的存在促进了离子液体[DMIm] [TFSI]甲基中的量子隧穿。通过在低温下结晶[DMIm] [TFSI]而不是玻璃化,可以观察到隧道现象。在中子散射测量中,当LiTFSI浓度为1?mol / kg时,在低于30?K的温度下,在〜27μeV处检测到量子隧穿激发,但在无盐的[DMIm] [TFSI]中则无法检测到。这表明,由于存在LiTFSI,甲基旋转势垒被降低,从而使隧穿激发处于可测量的范围内。盐诱导的旋转势垒的减少得到了准弹性散射数据的证实,该数据与在40至60?K之间测得的甲基的随机重新定向有关。

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