Ohms Leon, Schmidt Pascal, Surkau Jonas, Bresien Jonas, Schulz Axel
Institut für Chemie, Universität Rostock, Albert-Einstein-Straße 3a, 18059, Rostock, Germany.
Leibniz-Institut für Katalyse e.V. an der Universität Rostock, Albert-Einstein-Straße 29a, 18059, Rostock, Germany.
Chemistry. 2025 Aug 7;31(44):e202502029. doi: 10.1002/chem.202502029. Epub 2025 Jul 21.
The reactions of Pacman phosphanes (1a) with Lewis acids such as RB (R = CH, CF) and GaCl were investigated. While equilibria between mono- and di-adducts were found in the reaction with BPh, B(CF) preferentially formed the di-adduct (1a·2B(CF)), which could be isolated and fully characterized. density functional theory (DFT) calculations showed that the N-bonded adducts are thermodynamically more stable than the P-bonded adducts. In contrast to the reaction of the Pacman phosphane with boranes, GaCl reacted with 1a to give an unusual [Pacman-GaCl][GaCl] salt, featuring a nearly planar GaNC heterocycle as part of the Pacman macrocycle. In addition, the coordination geometry on one P atom changes from triple to an unusual quadruple coordination, although it is still a formal P atom in the + III oxidation state, as shown by quantum chemical calculations.
研究了Pacman膦(1a)与路易斯酸如RB(R = CH、CF)和GaCl的反应。虽然在与BPh的反应中发现了单加合物和二加合物之间的平衡,但B(CF)优先形成二加合物(1a·2B(CF)),该二加合物可以分离并进行全面表征。密度泛函理论(DFT)计算表明,N键合加合物在热力学上比P键合加合物更稳定。与Pacman膦与硼烷的反应不同,GaCl与1a反应生成一种不寻常的[Pacman-GaCl][GaCl]盐,其具有一个近乎平面的GaNC杂环作为Pacman大环的一部分。此外,一个P原子上的配位几何结构从三重配位变为不寻常的四重配位,尽管通过量子化学计算表明它在形式上仍为处于+III氧化态的P原子。