首页> 美国卫生研究院文献>Scientific Reports >Probing the Origin of Challenge of Realizing Metallaphosphabenzenes: Unfavorable12-Migration in Metallapyridines Becomes Feasible in Metallaphosphabenzenes
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Probing the Origin of Challenge of Realizing Metallaphosphabenzenes: Unfavorable12-Migration in Metallapyridines Becomes Feasible in Metallaphosphabenzenes

机译:探索实现金属磷酰苯的挑战的起源:不利金属磷吡啶中的12-迁移在金属磷苯中变得可行

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摘要

Metallabenzenes have attracted considerable interest of both theoretical and experimental chemists. However, metallaphosphabenzene has never been synthesized. Thus, understanding the origin of the challenge of synthesizing metallaphosphabenzene is particularly urgent for experimentalists. Now density functional theory (DFT) calculations have been carried out to examine this issue. Our results reveal that the 1,2-migration in metallapyridines is unfavorable whereas such a 1,2-migration in metallaphosphabenzenes is feasible, which can be rationalized by the reluctance of phosphorus to participate in π bonding. In addition, π-donor ligands and the 5d transition metals can stabilize metallaphosphabenzenes. Compared with hydride and methyl migration, the chloride migration has a relatively lower activation barrier due to the polarization of the M=P bond. CO ligand could further decrease the reaction barrier of the migration due to the reduction of the interaction between the metal centre and the phosphorus atom. All of these findings could help synthetic chemists to realize the first metallaphosphabenzene.
机译:金属苯已经引起了理论和实验化学家的极大兴趣。然而,从未合成金属磷酰苯。因此,对实验人员来说,了解合成金属磷酰苯挑战的根源尤为迫切。现在,已经进行了密度泛函理论(DFT)计算以检查该问题。我们的结果表明,金属吡啶中的1,2-迁移是不利的,而金属磷酰基苯中的1,2-迁移是可行的,这可以通过磷不愿参与π键来合理化。另外,π-供体配体和5d过渡金属可以稳定金属磷酰基苯。与氢化物和甲基迁移相比,由于M = P键的极化,氯化物迁移具有相对较低的活化势垒。由于金属中心与磷原子之间相互作用的减少,CO配体可以进一步降低迁移的反应势垒。所有这些发现可以帮助合成化学家实现首个金属磷酰基苯。

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