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螯合环大小对酮加氢催化的影响:易于合成含伯胺供体的 N-杂环卡宾钌(II)前催化剂用于酮加氢及机理的 DFT 研究。

Effect of chelating ring size in catalytic ketone hydrogenation: facile synthesis of ruthenium(II) precatalysts containing an N-heterocyclic carbene with a primary amine donor for ketone hydrogenation and a DFT study of mechanisms.

机构信息

Davenport Laboratory, Department of Chemistry, University of Toronto, 80 St. George Street, Toronto, Ontario M5S 3H6, Canada.

出版信息

Dalton Trans. 2012 Aug 7;41(29):8797-808. doi: 10.1039/c2dt30994g. Epub 2012 Jun 22.

DOI:10.1039/c2dt30994g
PMID:22728720
Abstract

A half-sandwich ruthenium(II) complex, [Ru(η(6)-p-cymene)(C-NH(2))Cl]PF(6) (4·PF(6)), containing an N-heterocyclic carbene (NHC) with a primary amine donor (C-NH(2)) which chelates through the carbene carbon and the amine nitrogen to form a 6-membered ring was synthesized in a one-pot reaction starting from a primary-amine functionalized imidazolium salt 2. Complex 4·PF(6) catalyzed the hydrogenation of ketones using 2-propanol or H(2) as the reductant. A maximum turnover frequency of 1062 h(-1) and a turnover number of 1140 at 5 h were achieved for the transfer hydrogenation of 3'-chloroacetophenone in 2-propanol at 75 °C. A cationic hydride-amine complex 5, [Ru(η(6)-p-cymene)(C-NH(2))H]PF(6), was synthesized, and this reacted very slowly with acetophenone unless first activated by an alkoxide base. Computational studies by DFT methods suggested that the poor reactivity of the hydride-amine complex 5 was attributed to a large barrier for the transfer of its H(+)/H(-) couple to a ketone for bifunctional catalysis. An inner-sphere mechanism, which involves a decoordinated amine group of the C-NH(2) ligand, was computed to be a feasible energetic pathway in comparison to the computed outer-sphere bifunctional mechanism. This explains the catalytic activity and selectivity that is observed for the newly synthesized ruthenium(II) catalysts.

摘要

一种半三明治钌(II)配合物,[Ru(η(6)-p-环戊二烯)(C-NH(2))Cl]PF(6)(4·PF(6)),其中含有一个 N-杂环卡宾(NHC),具有一个供体氨基(C-NH(2)),通过卡宾碳和氨基氮螯合形成一个 6 元环,是从一个带有伯胺官能团的咪唑𬭩盐 2 一锅法反应合成的。配合物 4·PF(6)使用 2-丙醇或 H(2)作为还原剂,催化酮的氢化反应。在 75°C 下,在 2-丙醇中对 3'-氯苯乙酮进行转移氢化时,达到了 1062 h(-1)的最大转化频率和 5 小时内 1140 的转化数。合成了一种阳离子氢化物-胺配合物 5,[Ru(η(6)-p-环戊二烯)(C-NH(2))H]PF(6),除非首先被烷氧基碱激活,否则它与苯乙酮反应非常缓慢。通过 DFT 方法进行的计算研究表明,氢化物-胺配合物 5 的低反应性归因于其 H(+)/H(-)对对于双功能催化的酮的转移的大障碍。与计算的外层双功能机制相比,计算出的内球机制涉及 C-NH(2)配体的去配位胺基团,是一种可行的能量途径。这解释了新合成的钌(II)催化剂所观察到的催化活性和选择性。

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