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钌的米尔斯坦联吡啶PNN钳形配合物在还原条件下成为诺依曼型催化剂。

The Milstein Bipyridyl PNN Pincer Complex of Ruthenium Becomes a Noyori-Type Catalyst under Reducing Conditions.

作者信息

Dawe Louise N, Karimzadeh-Younjali Morteza, Dai Zengjin, Khaskin Eugene, Gusev Dmitry G

机构信息

Department of Chemistry and Biochemistry, Wilfrid Laurier University, Waterloo, ON N2L 3C5, Canada.

Okinawa Institute of Science and Technology, Okinawa 904-0495, Japan.

出版信息

J Am Chem Soc. 2020 Nov 18;142(46):19510-19522. doi: 10.1021/jacs.0c06518. Epub 2020 Nov 9.

Abstract

Hydrogenation of the dearomatized PNN ligand of the Milstein bipyridyl complex RuH(CO)[PNN] () gives a square-pyramidal Ru(II) product RuH(CO)[pPNN] (). The central ring of the pPNN ligand is a piperidine. A minor byproduct of the hydrogenation reaction is complex which has a dimeric structure made of two Ru(II) fragments each possessing a partly hydrogenated PNN ligand. The structures of and have been elucidated by NMR spectroscopy and X-ray crystallography. The PNN ligand of is also hydrogenated under the conditions of the catalytic dehydrogenative coupling of ethanol to ethyl acetate. No direct evidence of the aromatized dihydride RuH(CO)[PNN] () was found in this study. However, treating RuHCl(CO)[PNN] with Li[HBEt] or reacting with H at low temperature resulted in a structurally characterized hydride-bridged dimer () bearing intact aromatized bipyridyl ligands. M06-L/def2-QZVP DFT calculations provided insights into the thermodynamics of the stoichiometric reactions of this work and into the nature of the intermediates of the catalytic ester hydrogenation facilitated by RuH(CO)[pPN(H)N] () formed from under H.

摘要

米尔斯坦联吡啶配合物RuH(CO)[PNN]()的去芳构化PNN配体氢化后得到一个四方锥型Ru(II)产物RuH(CO)[pPNN]()。pPNN配体的中心环是哌啶。氢化反应的一个次要副产物是配合物,它具有由两个Ru(II)片段组成的二聚体结构,每个片段都含有一个部分氢化的PNN配体。和的结构已通过核磁共振光谱和X射线晶体学得以阐明。在乙醇催化脱氢偶联生成乙酸乙酯的条件下,的PNN配体也会发生氢化反应。在本研究中未发现芳构化二氢化物RuH(CO)[PNN]()的直接证据。然而,用Li[HBEt]处理RuHCl(CO)[PNN]或在低温下与H反应会生成一种经结构表征的氢化物桥连二聚体(),其带有完整的芳构化联吡啶配体。M06-L/def2-QZVP密度泛函理论计算为这项工作的化学计量反应的热力学以及由在H作用下形成的RuH(CO)[pPN(H)N]()促进的催化酯氢化反应中间体的性质提供了见解。

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