Jabłoński Mirosław
Faculty of Chemistry, Nicolaus Copernicus University in Toruń, ul. Gagarina 7, 87-100 Toruń, Poland.
Molecules. 2022 Sep 5;27(17):5712. doi: 10.3390/molecules27175712.
The subject of research is forty dimers formed by imidazol-2-ylidene (I) or its derivative (IR2) obtained by replacing the hydrogen atoms in both N-H bonds with larger important and popular substituents of increasing complexity (methyl = Me, iso-propyl = iPr, tert-butyl = tBu, phenyl = Ph, mesityl = Mes, 2,6-diisopropylphenyl = Dipp, 1-adamantyl = Ad) and fundamental proton donor (HD) molecules (HF, HCN, H2O, MeOH, NH3). While the main goal is to characterize the generally dominant C⋯H-D hydrogen bond engaging a carbene carbon atom, an equally important issue is the often omitted analysis of the role of accompanying secondary interactions. Despite the often completely different binding possibilities of the considered carbenes, and especially HD molecules, several general trends are found. Namely, for a given carbene, the dissociation energy values of the IR2⋯HD dimers increase in the following order: NH3< H2O < HCN ≤ MeOH ≪ HF. Importantly, it is found that, for a given HD molecule, IDipp2 forms the strongest dimers. This is attributed to the multiplicity of various interactions accompanying the dominant C⋯H-D hydrogen bond. It is shown that substitution of hydrogen atoms in both N-H bonds of the imidazol-2-ylidene molecule by the investigated groups leads to stronger dimers with HF, HCN, H2O or MeOH. The presented results should contribute to increasing the knowledge about the carbene chemistry and the role of intermolecular interactions, including secondary ones.
研究对象是由咪唑 - 2 - 亚基(I)或其衍生物(IR2)形成的四十种二聚体,其中IR2是通过用越来越复杂的重要且常见的取代基(甲基 = Me,异丙基 = iPr,叔丁基 = tBu,苯基 = Ph,均三甲苯基 = Mes,2,6 - 二异丙基苯基 = Dipp,1 - 金刚烷基 = Ad)取代两个N - H键中的氢原子而得到的,以及与基本质子供体(HD)分子(HF、HCN、H₂O、MeOH、NH₃)形成的二聚体。虽然主要目标是表征涉及卡宾碳原子的通常占主导地位的C⋯H - D氢键,但一个同样重要的问题是常常被忽略的对伴随的二级相互作用作用的分析。尽管所考虑的卡宾以及尤其是HD分子的结合可能性通常完全不同,但仍发现了几个一般趋势。具体而言,对于给定的卡宾,IR2⋯HD二聚体的解离能值按以下顺序增加:NH₃ < H₂O < HCN ≤ MeOH ≪ HF。重要的是,发现对于给定的HD分子,IDipp₂形成最强的二聚体。这归因于伴随主导的C⋯H - D氢键的各种相互作用的多样性。结果表明,用所研究的基团取代咪唑 - 2 - 亚基分子两个N - H键中的氢原子会导致与HF、HCN、H₂O或MeOH形成更强的二聚体。所呈现的结果应有助于增加关于卡宾化学以及分子间相互作用(包括二级相互作用)作用的知识。