Wagaye Abraham Molla, Yohannes Teketel, Workneh Getachew Adam
Department of Industrial Chemistry, College of Applied Science, Addis Ababa Science and Technology University, P.O. Box 16417, Addis Ababa, Ethiopia.
Sustainable Energy Center of Excellence, Addis Ababa Science and Technology University, P.O. Box 16417, Addis Ababa, Ethiopia.
ACS Omega. 2024 Mar 18;9(12):14406-14418. doi: 10.1021/acsomega.4c00104. eCollection 2024 Mar 26.
An understanding of the nature of molecular interactions among the ion pairs of 1-ethyl-3-methylimidazolium bis(fluorosulfonyl)imide [EMI[FSI]] can offer a starting point and significant insight into the more dynamic and multiple interactions within the bulk liquid state. In this context, close inspection of ion pair conformers can offer insight into the effects in bulk [EMI][FSI] liquid. The current work, therefore, gives a detailed analysis of the [EMI][FSI] ion pair conformers through analysis of the interaction energies, stabilization energies, and natural orbital of the ion pair conformers. The structures of the cations, anions, and cation-anion ion pairs of the conformers are optimized systematically by the ωB97X-D method with the DGDZVP basis sets, considering both the empirical dispersion corrections and the presence of a polar solvent, and the most stable geometries are obtained. The [FSI] anions, unlike [TFSI] anions, exist at the top position with respect to imidazolium rings. The presence of out-of-plane interactions between the [EMI] and [FSI] ions is in good agreement with the stronger interactions of the [FSI] anions with alkyl group hydrogens. The presence of out-of-plane conformers could also be related to the interaction of the anion with the π clouds of the [EMI] ring. In the [EMI] cation, the aromatic ring is π-acidic due to the presence of a positive charge in the N-C-N ring, which leads to the presence of [FSI] anion donor [EMI] π-acceptor type interactions. The [EMI] cation and [FSI] anions tend to form multiple σ* and π* interactions but reduce the strength of the individual contributions from a potential (linear) maximum. For the ion pair [EMI][FSI], the absolute value of the interaction energies is lower than the normal hydrogen bond energy (50 kJ/mol), which indicates that there is a very weak electrostatic interaction between the [EMI] cations and [FSI] anions. The weaker attraction between the [EMI] and [FSI] ions is suggested to contribute to the larger diffusion coefficients of the ions.
了解1-乙基-3-甲基咪唑双(氟磺酰)亚胺[EMI[FSI]]离子对之间分子相互作用的本质,可以为深入了解本体液态中更动态、更复杂的相互作用提供一个起点和重要见解。在此背景下,仔细研究离子对构象异构体可以深入了解本体[EMI][FSI]液体中的各种效应。因此,当前的工作通过分析离子对构象异构体的相互作用能、稳定能和自然轨道,对[EMI][FSI]离子对构象异构体进行了详细分析。采用ωB97X-D方法和DGDZVP基组,系统优化了构象异构体的阳离子、阴离子和阳离子-阴离子离子对的结构,同时考虑了经验色散校正和极性溶剂的存在,得到了最稳定的几何结构。与[TFSI]阴离子不同,[FSI]阴离子相对于咪唑环处于顶部位置。[EMI]和[FSI]离子之间存在面外相互作用,这与[FSI]阴离子与烷基氢之间更强的相互作用一致。面外构象异构体的存在也可能与阴离子与[EMI]环的π云的相互作用有关。在[EMI]阳离子中,由于N-C-N环中存在正电荷,芳环呈π酸性,这导致了[FSI]阴离子供体-[EMI]π受体型相互作用的存在。[EMI]阳离子和[FSI]阴离子倾向于形成多个σ和π相互作用,但降低了潜在(线性)最大值中单个贡献的强度。对于离子对[EMI][FSI],相互作用能的绝对值低于正常氢键能(50 kJ/mol),这表明[EMI]阳离子和[FSI]阴离子之间存在非常弱的静电相互作用。[EMI]和[FSI]离子之间较弱的吸引力被认为有助于离子具有更大的扩散系数。