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多芳族氮杂环卡宾配体与π堆积。催化结果。

Polyaromatic N-heterocyclic carbene ligands and π-stacking. Catalytic consequences.

作者信息

Peris Eduardo

机构信息

Institute of Advanced Materials (INAM), Universitat Jaume I, Av. Vicente Sos Baynat, s/n, 12071 Castellón, Spain.

出版信息

Chem Commun (Camb). 2016 Apr 30;52(34):5777-87. doi: 10.1039/c6cc02017h. Epub 2016 Apr 11.

Abstract

In the course of our most recent research, we demonstrated how homogeneous catalysts with polyaromatic functionalities possess properties that clearly differ from those shown by analogues lacking these polyaromatic systems. The differences arise from the ability of the polyaromatic groups to afford non-covalent interactions with aromatic molecules, which can either be substrates in a homogeneous catalysed reaction, or the same catalysts to afford self-assembled systems. This article summarizes all our efforts toward understanding the fundamental effects of π-stacking interactions in homogenous catalysis, particularly in those cases where catalysts bearing polyaromatic functionalities are used. The study reveals several important implications regarding the influence of ligand-ligand interactions, ligand-additive interactions, and ligand-substrate interactions, in the performance of the catalysts used. In particular, the electronic properties of ligands with fused polyconjugated systems, are modified if molecules with π-stacking abilities are added, via a ligand-additive interaction. Also, the kinetics of the reactions in which aromatic substrates and catalysts with polyaromatic ligands are used, are strongly influenced by the self-association of the catalysts and by the non-covalent interaction between the catalyst and the aromatic substrates. The nature and the magnitude of these supramolecular interactions were unveiled by using host-guest chemistry methods applied to organometallic catalysis. Finally, non-covalent interactions afford a very convenient approach for the immobilization of catalysts decorated with polyaromatic systems onto the surfaces of graphene derivatives, hence affording an easy yet extremely effective way to support catalysts and facilitate recycling. The results given have fundamental implications in the design of future catalysts containing rigid polyaromatic systems, and may inspire future researchers in the design of improved homogeneous catalysts, by taking into account that the activities of the metal complexes are strongly modified by supramolecular interactions.

摘要

在我们最近的研究过程中,我们展示了具有多芳族功能的均相催化剂如何具有与缺乏这些多芳族体系的类似物明显不同的性质。这些差异源于多芳族基团与芳族分子形成非共价相互作用的能力,这些芳族分子既可以是均相催化反应中的底物,也可以是形成自组装体系的相同催化剂。本文总结了我们为理解均相催化中π-堆积相互作用的基本效应所做的所有努力,特别是在使用具有多芳族功能的催化剂的情况下。该研究揭示了关于配体-配体相互作用、配体-添加剂相互作用和配体-底物相互作用对所用催化剂性能影响的几个重要意义。特别是,如果添加具有π-堆积能力的分子,通过配体-添加剂相互作用,具有稠合多共轭体系的配体的电子性质会发生改变。此外,使用具有多芳族配体的芳族底物和催化剂的反应动力学,会受到催化剂的自缔合以及催化剂与芳族底物之间的非共价相互作用的强烈影响。通过将主客体化学方法应用于有机金属催化,揭示了这些超分子相互作用的性质和强度。最后,非共价相互作用为将装饰有多芳族体系的催化剂固定在石墨烯衍生物表面提供了一种非常方便的方法,从而提供了一种简单而极其有效的负载催化剂和促进循环利用的方式。给出的结果对未来含有刚性多芳族体系的催化剂的设计具有重要的基础意义,并且可能会启发未来的研究人员设计改进的均相催化剂,因为要考虑到金属配合物的活性会受到超分子相互作用的强烈影响。

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