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首页> 外文期刊>The Journal of Organic Chemistry >Anionic Halocuprate(II) Complexes as Catalysts for the Oxaziridine-Mediated Aminohydroxylation of Olefins
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Anionic Halocuprate(II) Complexes as Catalysts for the Oxaziridine-Mediated Aminohydroxylation of Olefins

机译:阴离子Halocuprate(II)配合物作为恶唑烷介导的烯烃氨基羟化反应的催化剂

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摘要

We have discovered that the oxaziridine-mediated copper-catalyzed aminohydroxylation reaction recently discovered in our laboratories is dramatically accelerated in the presence of halide additives. The use of this more active catalyst system enables the efficient aminohydroxylation of electronically and sterically deactivated styrenes and also enables the use of nonstereogenic 3,3-dialkyl oxaziridines as terminal oxidants in the aminohydroxylation reaction. We present evidence that anionic halocuprate(II) complexes are the catalytically active species responsible for the increased reactivity under these conditions. This unexpected observation has led us to re-evaluate our mechanistic understanding of this reaction. On the basis of the results of a variety of radical trapping experiments, we propose a modified mechanism that involves a homolytic reaction of the olefin with a copper(II)activated oxaziridine. Together, the observation that anionic additives significantly increase the oxidizing ability of oxaziridines and the recognition of the radical nature of reactions of oxaziridines under these conditions suggest that a variety of new oxidative transformations catalyzed by halocuprate(II) complexes should be possible.
机译:我们已经发现,在卤化物添加剂的存在下,我们实验室中最近发现的恶唑烷介导的铜催化的氨基羟基化反应会大大加速。使用这种更具活性的催化剂体系可以使电子和空间失活的苯乙烯有效地进行氨基羟化反应,并且还可以在氨基羟化反应中使用非立体异构的3,3-二烷基恶唑烷作为末端氧化剂。我们目前的证据表明,阴离子卤代戊二酸酯(II)配合物是在这些条件下负责增加反应活性的催化活性物质。这种意外的观察使我们重新评估了对这种反应的机械理解。根据各种自由基捕获实验的结果,我们提出了一种改进的机理,该机理涉及烯烃与铜(II)活化的恶唑烷的均相反应。在一起,观察到阴离子添加剂显着增加了氧氮丙啶的氧化能力,并认识到在这些条件下氧氮丙啶的反应的自由基性质表明,由卤代甲酸酯(II)络合物催化的各种新的氧化转化应是可能的。

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