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Theoretical study on the reaction mechanism of “ligandless” Ni-catalyzed hydrodesulfurization of aryl sulfide

机译:“无配位”镍催化芳基硫醚加氢脱硫反应机理的理论研究

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The reaction mechanism of Ni(COD)2 catalyzed hydrodesulfurization of aryl sulfide PhSMe with HSiMe3 as the reducing agent has been studied by using density functional theory methods. Both PhSMe-coordinated pathway and “ligandless” pathway have been identified and compared. It is found that these two reaction pathways are kinetically competitive and the σ-complex assisted metathesis (σ-CAM) transition state is the highest point on each energy profile for both pathways. Moreover, both the singlet and triplet reaction pathways of ligand substitutions have been compared and found that both singlet and triplet reaction mechanisms are competitive for the ligand substitution of COD with PhSMe on PhSMe-coordinated pathway while the triplet mechanism holds a distinct advantage over singlet one for that of COD with HSiMe3 on “ligandless” pathway.
机译:Ni(COD) 2 以HSiMe 3 为还原剂催化芳基硫醚PhSMe加氢脱硫的反应机理已经使用密度泛函理论方法进行了研究。 PhSMe协调途径和“无配体”途径均已被鉴定和比较。发现这两个反应途径在动力学上是竞争的,并且σ-复杂辅助复分解(σ-CAM)过渡态是这两个途径各自能量谱上的最高点。此外,已经比较了配体取代的单重态和三重态反应途径,发现在PhSMe配位途径上,单重态和三重态反应机制都对PhSMe取代COD的COD配体具有竞争性,而三重态机制比单重态具有明显的优势。 HSiMe 3 在“无配体”途径上的化学需氧量。

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