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铱-双METAMORPhos配合物催化甲酸脱氢反应:对协同配体作用的实验与计算研究

Dehydrogenation of formic acid by Ir-bisMETAMORPhos complexes: experimental and computational insight into the role of a cooperative ligand.

作者信息

Oldenhof Sander, Lutz Martin, de Bruin Bas, Ivar van der Vlugt Jarl, Reek Joost N H

机构信息

van 't Hoff Institute for Molecular Sciences , University of Amsterdam , Science Park 904 , 1098 XH , Amsterdam , The Netherlands . Email:

Bijvoet Center for Biomolecular Research , Utrecht University , Padualaan 8 , 3584 CH , Utrecht , The Netherlands.

出版信息

Chem Sci. 2015 Feb 1;6(2):1027-1034. doi: 10.1039/c4sc02555e. Epub 2014 Oct 22.

Abstract

The synthesis and tautomeric nature of three xanthene-based bisMETAMORPhos ligands () is reported. Coordination of these bis(sulfonamidophosphines) to Ir(acac)(cod) initially leads to the formation of Ir() species (), which convert formal oxidative addition of the ligand to Ir() monohydride complexes . The rate for this step strongly depends on the ligand employed. Ir complexes were applied in the base-free dehydrogenation of formic acid, reaching turnover frequencies of 3090, 877 and 1791 h, respectively. The dual role of the ligand in the mechanism of the dehydrogenation reaction was studied by H and P NMR spectroscopy and DFT calculations. Besides functioning as an internal base, bisMETAMORPhos also assists in the pre-assembly of formic acid within the Ir-coordination sphere and aids in stabilizing the rate-determining transition state through hydrogen-bonding.

摘要

报道了三种基于呫吨的双METAMORPhos配体()的合成及其互变异构性质。这些双(磺酰胺基膦)与Ir(acac)(cod)配位最初会生成Ir()物种(),其将配体的形式氧化加成转化为Ir()单氢化物配合物。此步骤的速率强烈取决于所使用的配体。Ir配合物被应用于甲酸的无碱脱氢反应,分别达到了3090、877和1791 h的周转频率。通过氢和磷核磁共振光谱以及密度泛函理论计算研究了配体在脱氢反应机理中的双重作用。除了作为内部碱发挥作用外,双METAMORPhos还协助甲酸在Ir配位球内进行预组装,并通过氢键作用有助于稳定速率决定过渡态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b39/5811074/b964e7ded41e/c4sc02555e-f1.jpg

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