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1-乙炔基-2-(苯乙炔基)苯对5-外向-双取代和6-内向-双取代环化反应的双金活化作用

Double Gold Activation of 1-Ethynyl-2-(Phenylethynyl)Benzene Toward 5-exo-dig and 6-endo-dig Cyclization Reactions.

作者信息

Villegas-Escobar Nery, Larsen Née Vilhelmsen Mie Højer, Gutiérrez-Oliva Soledad, Hashmi A Stephen K, Toro-Labbé Alejandro

机构信息

Laboratorio de Química Teórica Computacional (QTC), Facultad de Química, Pontificia Universidad Católica de Chile, Santiago, Chile.

Institute of Organic Chemistry, Heidelberg University, Heidelberg, Germany.

出版信息

Chemistry. 2017 Sep 27;23(54):13360-13368. doi: 10.1002/chem.201701595. Epub 2017 Aug 9.

Abstract

In this work, a detailed characterization was carried out of the ring-closure mechanism of EPB (1-ethynyl-2-(phenylethynyl)benzene) toward the 5-exo-dig and 6-endo-dig cyclization reactions, catalyzed by two Au-N-heterocyclic carbene (NHC) moieties. It was found that the 5-exo-dig cyclization takes place with a slightly lower activation barrier and larger exothermicity compared to that of the 6-endo-dig cyclization, in agreement with the available experimental data. A phenomenological partition (structural and electronic) for rate constants computed using transition-state theory and the reaction force analysis was used to shed light into the nature of the activation rate constant. It was found that rate constants are influenced by a strong structural component, which is larger for the 5-exo-dig cyclization due to the strain to form the five-membered ring. On the other hand, the gold activation mechanism is evidenced by a σ- and π-coordination of the Au-NHC moieties to the EPB substrate. It was found that differences in the σ-coordination arise on the reaction path for the 5-exo-dig and 6-endo-dig cyclizations. Thus, in the 6-endo-dig cyclization the σ gold-EPB interaction is weakened as a consequence of the formation of the cationic aryl intermediate, while for the 5-exo-dig cyclization this interaction was found to be favored. Furthermore, although minor changes in the Au-EPB coordination occur on the reaction path, these bonds are formally established in the TS vicinity. Results support the concerted nature of the dual gold activation mechanism.

摘要

在这项工作中,对由两个金 - N - 杂环卡宾(NHC)部分催化的EPB(1 - 乙炔基 - 2 - (苯乙炔基)苯)的闭环机理进行了详细表征,该闭环反应涉及5 - 外向 - 双环化和6 - 内向 - 双环化反应。结果发现,与6 - 内向 - 双环化相比,5 - 外向 - 双环化发生时的活化能垒略低,放热更大,这与现有的实验数据一致。使用过渡态理论计算的速率常数的唯象划分(结构和电子)以及反应力分析,以阐明活化速率常数的本质。结果发现,速率常数受强烈的结构成分影响,对于5 - 外向 - 双环化,由于形成五元环的应变,该结构成分更大。另一方面,金活化机理通过Au - NHC部分与EPB底物的σ - 和π - 配位得以证明。发现在5 - 外向 - 双环化和6 - 内向 - 双环化的反应路径上,σ - 配位存在差异。因此,在6 - 内向 - 双环化中,由于阳离子芳基中间体的形成,σ金 - EPB相互作用减弱,而对于5 - 外向 - 双环化,发现这种相互作用是有利的。此外,尽管在反应路径上Au - EPB配位发生了微小变化,但这些键在过渡态附近正式形成。结果支持了双金活化机理的协同性质。

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