Faculty of Chemistry, Wrocław University of Science and Technology, Wybrzeże Wyspiańskiego 27, 50-370, Wrocław, Poland.
Department of Chemistry and Biochemistry, Utah State University Logan, Utah, 84322-0300, USA.
Chemphyschem. 2021 May 17;22(10):924-934. doi: 10.1002/cphc.202100157. Epub 2021 Apr 19.
Crystal structures document the ability of a TF group (T=Si, Ge, Sn, Pb) situated on a naphthalene system to engage in an intramolecular tetrel bond (TB) with an amino group on the adjoining ring. Ab initio calculations evaluate the strength of this bond and evaluate whether it can influence the ability of the T atom to engage in a second, intermolecular TB with another nucleophile. A very strong CN anionic base can approach the T either along the extension of a T-C or T-F bond and form a strong TB with an interaction energy approaching 100 kcal/mol, although this bond is weakened a bit by the presence of the internal T⋅⋅⋅N bond. The much less potent NCH base engages in a correspondingly longer and weaker TB, less than 10 kcal/mol. Such an intermolecular TB is weakened by the presence of the internal TB, to the point that it only occurs for the two heavier tetrel atoms Sn and Pb.
晶体结构证明了位于萘环系统上的 TF 基团(T=Si、Ge、Sn、Pb)与相邻环上的氨基形成分子内四键(TB)的能力。从头算计算评估了该键的强度,并评估了它是否可以影响 T 原子与另一个亲核试剂形成第二个分子间 TB 的能力。非常强的 CN 阴离子碱可以沿着 T-C 或 T-F 键的延伸方向接近 T,并形成一个强 TB,其相互作用能接近 100 kcal/mol,尽管内部 T⋅⋅⋅N 键的存在稍微削弱了这个键。较弱的 NCH 碱形成相应更长且更弱的 TB,小于 10 kcal/mol。这种分子间 TB 由于内部 TB 的存在而减弱,以至于只有对于两个较重的四键原子 Sn 和 Pb 才会发生。