Weiss Robin, Aubert Emmanuel, Groslambert Loic, Pale Patrick, Mamane Victor
Institute of Chemistry of Strasbourg, UMR 7177 - LASYROC, CNRS and Strasbourg University, 4 rue Blaise Pascal, 67000, Strasbourg, France.
Université de Lorraine, CNRS, CRM2, 54000, Nancy, France.
Chemistry. 2022 May 2;28(25):e202200395. doi: 10.1002/chem.202200395. Epub 2022 Apr 1.
The chalcogen bonding (ChB) ability of Te is studied in symmetrical diaryl ditellurides ArTeTeAr. Among the two Te σ-holes, the one along the less polarized Te-Te bond was calculated as the more electropositive. This counter-intuitive situation is due to the hyperconjugation contribution from Te lone pair to the σ* of the adjacent Te which coincides with σ-hole along the more polarized Te-Ar bond. ArTeTeAr showed notable structural features in the solid state as a result of intermolecular Te⋅⋅⋅Te ChB, such as a Te rectangle through dimer aggregation or a triangular Te motif, where one Te interacts with both Te atoms of a neighboring molecule through both its σ-hole and lone pair, in a slightly frustrated geometry. Lewis acidity of ArTeTeAr was also evaluated by NMR with R PO as σ-hole acceptors in different solvents. Thus, Te NMR allowed monitoring Te⋅⋅⋅O interaction and delivering association constants (K ) for 1 : 1 adducts. The highest value of K =90 M was measured for the adduct between ArTeTeAr bearing CF groups and Et PO in cyclohexane. Notably, by using nBu PO, Te⋅⋅⋅O interaction was revealed by F- H HOESY showing spatial proximity between CF and CH of nBu PO.
在对称二芳基二碲化物ArTeTeAr中研究了碲的硫属元素键合(ChB)能力。在两个碲σ-空穴中,沿着极化程度较小的Te-Te键的那个被计算为更正电的。这种违反直觉的情况是由于碲孤对电子对相邻碲的σ*的超共轭贡献,这与沿着极化程度较大的Te-Ar键的σ-空穴重合。由于分子间Te⋅⋅⋅Te ChB,ArTeTeAr在固态中表现出显著的结构特征,例如通过二聚体聚集形成的碲矩形或三角形碲基序,其中一个碲通过其σ-空穴和孤对电子与相邻分子的两个碲原子相互作用,处于略微受挫的几何构型。还通过在不同溶剂中以R PO作为σ-空穴受体的NMR评估了ArTeTeAr的路易斯酸度。因此,碲核磁共振允许监测Te⋅⋅⋅O相互作用并给出1 : 1加合物的缔合常数(K)。在环己烷中,含CF基团的ArTeTeAr与Et PO之间的加合物测得的K最高值为90 M。值得注意的是,通过使用nBu PO,F-H HOESY揭示了Te⋅⋅⋅O相互作用,显示了nBu PO的CF和CH之间的空间接近性。