论文标题

离子液体阴离子之间的抗静电氢键:密度功能理论研究

Anti-electrostatic hydrogen bonding between anions of ionic liquids: A density functional theory study

论文作者

Chen, Junwu, Dong, Kun, Liu, Lei, Zhang, Xiangping, Zhang, Suojiang

论文摘要

氢键(HBS)在离子液体(ILS)的物理化学特性中起着至关重要的作用。目前,已广泛报道了阳离子和阴离子之间的HBS(CA-AN)或IL中阳离子(CA-CA)之间的HB。在这里,我们为IL 1-(2-羟基乙基)的阴离子(an-an)之间的Hbs的DFT证据提供了证据。4-3-甲基咪唑烷4-(2-羟基乙基)咪唑酰胺[Hemim] [Heim] [Heim]。通过势能扫描研究了阴离子,阳离子和H2O二聚体的热力学稳定性以及离子对。结果表明,阳离子对是最稳定的,而阴离子二聚体中的HB具有与水二聚体相似的热力学稳定性。进一步的几何,光谱和电子结构分析表明,植物间HB符合传统HBS的一般理论标准。复合物中四个HB的强度顺序是阳离子对> H2O二聚体=阳离子二聚体>阴离子二聚体。能量分解分析表明,诱导和分散相互作用是克服强库仑排斥,形成植物间HB的关键因素。最后,通过对包含两个离子对的系统的全球最小搜索,已经证实了离子簇中的植物间HBS的存在。即使羟基官能化的阳离子更有可能与阴离子形成HB,但低洼结构中的羟基之间仍然存在植物间HB。我们的研究扩大了对离子液体中HBS的理解,并支持最近提出的抗静电性HBS的概念。

Hydrogen bonds (HBs) play a crucial role in the physicochemical properties of ionic liquids (ILs). At present, HBs between cations and anions (Ca-An) or between cations (Ca-Ca) in ILs have been reported extensively. Here, we provided DFT evidences for the exists of HBs between anions (An-An) in the IL 1-(2-hydroxyethyl)-3-methylimidazolium 4-(2-hydroxyethyl)imidazolide [HEMIm][HEIm]. The thermodynamics stabilities of anionic, cationic, and H2O dimers together with ionic pairs were studied by potential energy scans. The results show that the cation-anion pair is the most stable one, while the HB in anionic dimer possesses similar thermodynamics stability to the water dimer. The further geometric, spectral and electronic structure analyses demonstrate that the inter-anionic HB meets the general theoretical criteria of traditional HBs. The strength order of four HBs in complexes is cation-anion pair > H2O dimer = cationic dimer > anionic dimer. The energy decomposition analysis indicates that induction and dispersion interactions are the crucial factors to overcome strong Coulomb repulsions, forming inter-anionic HBs. Lastly, the presence of inter-anionic HBs in ionic cluster has been confirmed by a global minimum search for a system containing two ionic pairs. Even though hydroxyl-functionalized cations are more likely to form HBs with anions, there still have inter-anionic HBs between hydroxyl groups in the low-lying structures. Our studies broaden the understanding of HBs in ionic liquids and support the recently proposed concept of anti-electrostatic HBs.

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