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The cooperative role of innocent ligand in N-heterocyclic carbene manganese catalyzed carbon dioxide hydrogenation

机译:无辜的配体在合作的作用氮杂卡宾碳锰催化二氧化碳加氢

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摘要

N-Heterocyclic carbene (NHC) and carbonyl (CO) ligands are generally regarded as innocent ligands in bifunctional catalysts. However, their non-innocent roles in cooperation as Lewis acid sites due to their pi-accepting characteristics have long been neglected. Herein, the unprecedented cooperation roles of NHC and CO ligands were systematically investigated for N-heterocyclic carbene manganese complex promoted CO2 hydrogenation to formate by density functional theory (DFT) studies. Our results demonstrate the important cooperation role of the CO ligand, which could assist the reaction by stabilizing the negatively charged hydride. Two energetically accessible and competitive mechanisms are located, including the innocent ligand mechanism with activation free energy of 29.4 kcal mol(-1) and the non-innocent CO-assisted mechanism with activation free energy of 27.2 kcal mol(-1). In contrast, the NHC-assisted mechanism has a higher free energy barrier (34.1 kcal mol(-1)) for H-2 heterolysis compared to the CO-assisted case, which should be mainly attributed to the more acidic pi* orbital of the CO ligand than that of the NHC ligand. The possibility of the involvement of CO ligand as a Lewis acid was verified by the relevant reported crystal structures in the literature. The unfolded significant cooperation role of the CO ligand, which is generally neglected in conventional studies, should provide important mechanistic insights into the rational design of bifunctional catalysts with conventional innocent ligands.
机译:氮杂卡宾(NHC)和羰基(有限公司)配体通常被认为是无辜的在双功能催化剂配体。作为路易斯酸non-innocent合作角色网站由于其pi-accepting特征长期以来一直被忽视。前所未有的合作NHC的角色和有限公司配体被系统地调查氮杂卡宾锰复杂的提升二氧化碳加氢甲酸的密度泛函理论(DFT)的研究。演示的重要合作作用公司配体,这可能帮助的反应稳定氢化带负电。积极访问和竞争机制,包括无辜的配体活化自由能的机制29.4千卡摩尔(1)和non-innocentCO-assisted机制与活化自由能27.2千卡摩尔(1)。NHC-assisted机制有一个更高的自由能障碍(34.1千卡摩尔(1))2异裂CO-assisted相比的情况下,应主要归因于酸性更强π*轨道的公司比NHC配体的配位体。参与公司配体的可能性验证了路易斯酸相关的报道在文献中晶体结构。展开的重要合作作用有限公司配体,这通常被忽视传统的研究中,应该提供重要机械设计合理的见解双功能催化剂与传统无辜的配体。

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