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实现镁烷基的氧化学里程碑:向 O 活化的紧密态和首个单体确定的镁烷基过氧化物迈进。

Reaching Milestones in the Oxygenation Chemistry of Magnesium Alkyls: towards Intimate States of O Activation and the First Monomeric Well-Defined Magnesium Alkylperoxide.

机构信息

Faculty of Chemistry, Warsaw University of Technology, Noakowskiego 3, 00-664, Warsaw, Poland.

Institute of Physical Chemistry, Polish Academy of Science, Kasprzaka 44/52, 01-224, Warsaw, Poland.

出版信息

Chemistry. 2019 Feb 18;25(10):2503-2510. doi: 10.1002/chem.201805180. Epub 2019 Jan 17.

Abstract

Despite decades of extensive studies on the reactivity of magnesium alkyls towards O , the isolation and structural characterization of discrete products of these reactions still remains a challenge. Although the formation of the most frequently encountered magnesium alkoxides through unstable alkylperoxide intermediates has commonly been accepted, the latter species have been elusive for over 100 years. Probing the oxygenation of a seemingly simple well-defined neo-pentylmagnesium complex stabilized by a β-diketiminate ligand, ( BDI)MgCH CMe , we report on the isolation and structure characterization of both a dimeric magnesium alkoxide [( BDI)Mg(μ-OCH CMe )] and the first example of monomeric magnesium alkylperoxide [( BDI)Mg(thf)OOCH CMe ] ( BDI=[(ArNCMe) CH] and Ar=C H iPr -2,6). The formation of monomeric magnesium alkylperoxide demonstrates a crucial role of an additional Lewis base for stabilizing the most elusive oxygenation products likely due to increasing of the electron density on the metal centre. Moreover, the H NMR studies at -80 °C revealed that the dissociation of a coordinated Lewis base from the solvated complex ( BDI)Mg(L)CH CMe (where L=thf or 4-methylpyridine) is likely not required prior to the effective attack of an O molecule on the metal centre and the four-coordinate alkylmagnesium complex reacts smoothly with O under these conditions. The results can be expected to aid future engineering of various organomagnesium/O -based reaction systems.

摘要

尽管数十年来人们对镁烷基与氧的反应性进行了广泛的研究,但这些反应离散产物的分离和结构表征仍然是一个挑战。虽然通过不稳定的烷过氧化物中间体形成最常见的镁烷氧基通常被接受,但后者在 100 多年来一直难以捉摸。通过探测一种看似简单的、由β-二酮亚胺配体稳定的新戊基镁络合物的氧化,我们报告了二聚镁烷氧基[(BDI)Mg(μ-OCH CMe )]和单核镁烷基过氧化物[(BDI)Mg(thf)OOCH CMe ](BDI=[(ArNCMe) CH],Ar=C H iPr -2,6)的分离和结构特征。单核镁烷基过氧化物的形成证明了额外路易斯碱的形成对于稳定最难以捉摸的氧化产物起着至关重要的作用,这可能是由于金属中心的电子密度增加。此外,在-80°C下的 H NMR 研究表明,在 O 分子有效地攻击金属中心之前,从溶剂化络合物(BDI)Mg(L)CH CMe(其中 L=thf 或 4-甲基吡啶)中解离配位的路易斯碱可能不是必需的,并且在这些条件下,四配位的烷基镁络合物与 O 反应顺利。这些结果有望有助于未来对各种有机镁/O 基反应体系的工程设计。

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