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揭示芘标签铱配合物催化的借氢过程中π-堆积的重要性。

Unveiling the Importance of π-Stacking in Borrowing-Hydrogen Processes Catalysed by Iridium Complexes with Pyrene Tags.

作者信息

Ruiz-Botella Sheila, Peris Eduardo

机构信息

Departamento de Química Inorgánica y Orgánica, Universitat Jaume I, Avda. Sos Baynat, 12071 Castellón (Spain), Fax: (+34) 964387522.

出版信息

Chemistry. 2015 Oct 19;21(43):15263-71. doi: 10.1002/chem.201502948. Epub 2015 Sep 10.

Abstract

This work describes the preparation of a series of pyrene-tagged N-heterocyclic carbene complexes of iridium, and their use in two benchmark borrowing hydrogen reactions: the reduction of ketones by transfer hydrogenation and the β-alkylation of secondary alcohols with primary alcohols. The detailed study of these homogeneously catalysed reactions reveals several important implications regarding the strong influence of the pyrene tags in the catalysts. First, the catalytic activity is partially inhibited by addition of an external amount of pyrene, but only when pyrene-tagged catalysts and aromatic substrates are used. Second, the rate order of the reaction is highly dependent on the nature of the substrates and the ligand. When pyrene-tagged catalysts and aromatic substrates are used, the reaction follows a zero-order dependence on the concentration of the substrate. All other combinations afford a second-order rate in the substrates. And third, the presence or absence of the pyrene functionality in the catalyst also influences the reaction order with respect to the concentration of the catalyst. Pyrene-containing catalysts display a fractional rate order of below 1. Finally, two pyrene-tagged catalysts were supported onto reduced-graphene oxide (rGO), and used as heterogeneous catalysts. While the dimetallic catalyst was effectively recycled 12 times, the monometallic catalyst maintained its activity for only three runs.

摘要

这项工作描述了一系列铱的芘标记的N-杂环卡宾配合物的制备,以及它们在两个基准氢转移反应中的应用:通过转移氢化还原酮以及仲醇与伯醇的β-烷基化反应。对这些均相催化反应的详细研究揭示了芘标签对催化剂的强烈影响的几个重要意义。首先,通过添加外部量的芘,催化活性会部分受到抑制,但仅当使用芘标记的催化剂和芳香底物时才会出现这种情况。其次,反应的速率顺序高度依赖于底物和配体的性质。当使用芘标记的催化剂和芳香底物时,反应对底物浓度呈零级依赖性。所有其他组合在底物中呈现二级速率。第三,催化剂中芘官能团的存在与否也会影响相对于催化剂浓度的反应顺序。含芘催化剂显示出低于1的分数速率顺序。最后,将两种芘标记的催化剂负载在还原氧化石墨烯(rGO)上,并用作多相催化剂。虽然双金属催化剂有效地循环使用了12次,但单金属催化剂仅在三次运行中保持其活性。

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