Department of Chemistry and Applied Chemistry, Graduate School of Science and Engineering, Saga University, Honjo-machi, Saga 840-8502, Japan.
Phys Chem Chem Phys. 2018 May 9;20(18):12858-12869. doi: 10.1039/c8cp00963e.
The hydrogen bonds of the imidazolium-ring H atoms of ionic liquids (ILs), 1-alkyl-3-methylimidazolium bis(trifluoromethylsulfonyl)amides ([Cnmim][TFSA], n = 2 to 12 where n represents the alkyl chain length), with the O atom of dimethyl sulfoxide (DMSO) have been elucidated using 1H, 13C, and 15N NMR spectroscopy and soft X-ray absorption and emission spectroscopy (XAS and XES). Density functional theory (DFT) calculations have been performed on an isolated DMSO molecule and two cluster models of [Cnmim]+-DMSO by hydrogen bonding to interpret the XES spectra for the [Cnmim][TFSA]-DMSO solutions. The 1H and 13C NMR chemical shifts of the imidazolium ring showed that deshielding of the ring H and C atoms is moderate as the DMSO mole fraction xDMSO increases to ∼0.8; however, it becomes more significant with further increase of xDMSO. This finding suggests that the hydrogen bonds of the three ring H atoms with the DMSO O atoms are saturated in solutions with xDMSO increased to ∼0.8. The 1H and 13C chemical shifts of the alkyl chains revealed that the electron densities of the chain H and C atoms gradually decrease with increasing xDMSO, except for the N1-bound carbon atom C7 of the chain. The 15N NMR chemical shifts showed that the imidazolium-ring N1 atom which is bound to the alkyl chain is shielded with increasing xDMSO in the range from 0 to 0.8 and is then deshielded with further increase of xDMSO. In contrast, the imidazolium ring N3 atom is simply deshielded with increasing xDMSO. Thus, the electron densities of the alkyl chain may be condensed at the C7 and N1 atoms of [Cnmim]+ by the hydrogen bonding of the ring H atoms with DMSO. The hydrogen bonding of DMSO with the ring results in low-energy shifts of the XES peaks of the O K-edge of DMSO. Small-angle neutron scattering experiments showed that [Cnmim][TFSA] and DMSO are homogeneously mixed with each other on the mesoscopic scale. This results from the strong hydrogen bonds of DMSO with the imidazolium-ring H atoms.
离子液体(ILs)中咪唑环 H 原子与二甲基亚砜(DMSO)的 O 原子之间的氢键,使用 1H、13C 和 15N NMR 光谱以及软 X 射线吸收和发射光谱(XAS 和 XES)进行了阐明。通过氢键对 DMSO 分子和两个[Cnmim]+-DMSO 簇模型进行了密度泛函理论(DFT)计算,以解释 [Cnmim][TFSA]-DMSO 溶液的 XES 光谱。随着 DMSO 摩尔分数 xDMSO 的增加,咪唑环的 1H 和 13C NMR 化学位移表明,环 H 和 C 原子的去屏蔽作用适中,在 xDMSO 增加到约 0.8 时;然而,随着 xDMSO 的进一步增加,这种情况变得更加显著。这一发现表明,在 xDMSO 增加到约 0.8 时,与 DMSO O 原子的三个环 H 原子的氢键在溶液中达到饱和。随着 xDMSO 的增加,烷基链的 1H 和 13C 化学位移表明,除了链上与 N1 结合的碳原子 C7 外,链上 H 和 C 原子的电子密度逐渐降低。15N NMR 化学位移表明,与烷基链结合的咪唑环 N1 原子随着 xDMSO 的增加而被屏蔽,在 0 到 0.8 的范围内,然后随着 xDMSO 的进一步增加而去屏蔽。相比之下,咪唑环 N3 原子随着 xDMSO 的增加而简单地去屏蔽。因此,烷基链的电子密度可能通过环 H 原子与 DMSO 的氢键凝聚在[Cnmim]+的 C7 和 N1 原子上。DMSO 与环的氢键导致 DMSO 的 O K 边 XES 峰的低能位移。小角中子散射实验表明,[Cnmim][TFSA]和 DMSO 在介观尺度上均匀混合。这是由于 DMSO 与咪唑环 H 原子之间的强氢键。