Jabłoński Mirosław
Faculty of Chemistry, Nicolaus Copernicus University in Toruń, Gagarina 7, 87-100 Toruń, Poland.
Materials (Basel). 2021 Oct 16;14(20):6147. doi: 10.3390/ma14206147.
This article discusses the properties of as many as 30 carbene-ZnX2 (X = H, Me, Et) complexes featuring a zinc bond C⋯Zn. The group of carbenes is represented by imidazol-2-ylidene and its nine derivatives (labeled as IR), in which both hydrogen atoms of N-H bonds have been substituted by R groups with various spatial hindrances, from the smallest Me, iPr, tBu through Ph, Tol, and Xyl to the bulkiest Mes, Dipp, and Ad. The main goal is to study the relationship between type and size of R and X and both the strength of C⋯Zn and the torsional angle of the ZnX2 plane with respect to the plane of the imidazol-2-ylidene ring. Despite the considerable diversity of R and X, the range of dC⋯Zn is quite narrow: 2.12-2.20 Å. On the contrary, D0 is characterized by a fairly wide range of 18.5-27.4 kcal/mol. For the smallest carbenes, the ZnX2 molecule is either in the plane of the carbene or is only slightly twisted with respect to it. The twist angle becomes larger and more varied with the bulkier R. However, the value of this angle is not easy to predict because it results not only from the presence of steric effects but also from the possible presence of various interatomic interactions, such as dihydrogen bonds, tetrel bonds, agostic bonds, and hydrogen bonds. It has been shown that at least some of these interactions may have a non-negligible influence on the structure of the IR-ZnX2 complex. This fact should be taken into account in addition to the commonly discussed R⋯X steric repulsion.
本文讨论了多达30种具有锌键C⋯Zn的卡宾-ZnX2(X = H、Me、Et)配合物的性质。卡宾基团由咪唑-2-亚基及其九种衍生物(标记为IR)代表,其中N-H键的两个氢原子均已被具有不同空间位阻的R基团取代,从最小的Me、iPr、tBu到Ph、Tol和Xyl,再到体积最大的Mes、Dipp和Ad。主要目标是研究R和X的类型与大小与C⋯Zn强度以及ZnX2平面相对于咪唑-2-亚基环平面的扭转角之间的关系。尽管R和X具有相当大的多样性,但dC⋯Zn的范围相当窄:2.12 - 2.20 Å。相反,D0的特征在于范围相当宽,为18.5 - 27.4 kcal/mol。对于最小的卡宾,ZnX2分子要么在卡宾平面内,要么仅相对于其稍有扭曲。随着R体积的增大,扭转角变得更大且变化更多。然而,这个角度的值不容易预测,因为它不仅源于空间效应的存在,还源于可能存在的各种原子间相互作用,如双氢键、碳-硅键、agostic键和氢键。已经表明,这些相互作用中至少有一些可能对IR-ZnX2配合物的结构有不可忽略的影响。除了通常讨论的R⋯X空间排斥外还应考虑这一事实。