Tao Yunwen, Zou Wenli, Luo Geng-Geng, Kraka Elfi
Department of Chemistry, Southern Methodist University, 3215 Daniel Avenue, Dallas, Texas 75275-0314, United States.
Institute of Modern Physics, Northwest University, and Shaanxi Key Laboratory for Theoretical Physics Frontiers, Xi'an, Shaanxi 710127, P. R. China.
Inorg Chem. 2021 Feb 15;60(4):2492-2502. doi: 10.1021/acs.inorgchem.0c03418. Epub 2021 Feb 3.
Hydride ligands of transition metal polyhydride complexes with a high coordination number are prone to fluxionality leading to interesting structural dynamics. However, the underlying polytopal rearrangement pathways have been rarely studied. Based on quantum chemical calculations carried out in this work with density functional theory and coupled-cluster theory, two new fluxional mechanisms have been identified for the rhenium polyhydride complex ReH(PPh)(pyridine) to jointly account for two consecutive coalescence events in the variable-temperature NMR spectra upon heating: lateral and basal three-arm turnstile rotation. The frequently cited pseudorotation in ReH(PPh)(pyridine) (Lee et al. 695) turns out to be a three-step process including two lateral three-arm turnstile steps and one basal turnstile step in between. The new fluxional mechanisms discovered in this work may also exist in other transition metal polyhydrides.
具有高配位数的过渡金属多氢配合物的氢化物配体易于发生分子内重排,从而导致有趣的结构动力学。然而,潜在的多面体重排途径很少被研究。基于本工作中使用密度泛函理论和耦合簇理论进行的量子化学计算,已为铼多氢配合物ReH(PPh)(吡啶)确定了两种新的分子内重排机制,以共同解释加热时变温核磁共振谱中的两个连续合并事件:横向和基部三臂旋转门旋转。在ReH(PPh)(吡啶)中经常被引用的假旋转(Lee等人,695)原来是一个三步过程,包括两个横向三臂旋转门步骤和其间的一个基部旋转门步骤。本工作中发现的新分子内重排机制也可能存在于其他过渡金属多氢化物中。