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Halogen bonding interactions in ion pairs versus conventional charge-assisted and neutral halogen bonds: a theoretical study based on imidazolium species

机译:离子对中的卤素键与传统的电荷辅助和中性卤素键的相互作用:基于咪唑类的理论研究

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Halogen bonds in imidazolium-based ion pairs have attracted recent research interest, due to their importance in the fields of anion recognition and ionic liquids. According to our survey of the Cambridge Structural Database (CSD), a number of crystal structures involving these specific halogen bonds were extracted. In this work, three different types of halogen bonding interactions, i.e. ion-pair halogen bonds, charge-assisted and neutral halogen bonds, in a series of dimeric complexes of imidazolium species were systematically studied at the M06-2x and B3LYP levels of theory. Ion-pair halogen bonds, despite being considerably stronger, show similar structural and energetic characteristics to common charge-assisted and neutral halogen bonds. To gain a deeper understanding of these interactions, the atoms in molecules (AIM), noncovalent interaction index (NCI), and energy decomposition analysis (EDA) calculations were undertaken. Most halogen bonds in imidazolium-based ion pairs have some covalent character, while the other two kinds of halogen bonds are weak electrostatic interactions. The attraction of ion-pair halogen bonds arises dominantly from electrostatic forces, while dispersion interaction plays a minor role. These two terms, however, contribute almost equally to the attraction of neutral halogen bonds. In addition to electrostatic attraction, induction interaction, which corresponds to charge transfer and mixing terms, also plays an important role in ion-pair and charge-assisted halogen bonds. The results presented should assist in the development of potent imidazolium-based anion receptors and novel halogenated ionic liquids with promising properties.
机译:基于咪唑鎓的离子对中的卤素键由于在阴离子识别和离子液体领域中的重要性而引起了近期的研究兴趣。根据我们对剑桥结构数据库(CSD)的调查,提取了许多涉及这些特定卤素键的晶体结构。在这项工作中,在理论上以M06-2x和B3LYP的水平系统研究了一系列咪唑鎓类二聚体配合物中的三种不同类型的卤素键相互作用,即离子对卤素键,电荷辅助键和中性卤素键。离子对卤素键尽管强度更高,但仍显示出与常见的电荷辅助和中性卤素键相似的结构和高能特性。为了更深入地了解这些相互作用,我们进行了分子原子(AIM),非共价相互作用指数(NCI)和能量分解分析(EDA)计算。咪唑基离子对中的大多数卤素键具有某些共价特征,而其他两种卤素键则具有弱的静电相互作用。离子对卤素键的吸引力主要来自静电力,而分散相互作用起着较小的作用。然而,这两个术语几乎均等地吸引中性卤素键。除静电吸引外,与电荷转移和混合术语相对应的感应相互作用在离子对和电荷辅助的卤素键中也起着重要作用。提出的结果应有助于开发基于咪唑鎓的有效阴离子受体和具有前景的新型卤代离子液体。

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