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一种含庞大螯合双(醇盐)配体的锰(II)配合物的叠氮化反应活性

Aziridination Reactivity of a Manganese(II) Complex with a Bulky Chelating Bis(Alkoxide) Ligand.

作者信息

Kurup Sudheer S, Woodland Natalie M, Lord Richard L, Groysman Stanislav

机构信息

Department of Chemistry, Wayne State University, 5101 Cass Ave., Detroit, MI 48202, USA.

Department of Chemistry, Grand Valley State University, 1 Campus Drive, Allendale, MI 49401, USA.

出版信息

Molecules. 2022 Sep 6;27(18):5751. doi: 10.3390/molecules27185751.

Abstract

Treatment of Mn(N(SiMe))(THF) with bulky chelating bis(alkoxide) ligand [1,1':4',1''-terphenyl]-2,2''-diylbis(diphenylmethanol) (H[O-terphenyl-O]) formed a seesaw manganese(II) complex MnO-terphenyl-O, characterized by structural, spectroscopic, magnetic, and analytical methods. The reactivity of MnO-terphenyl-O with various nitrene precursors was investigated. No reaction was observed between MnO-terphenyl-O and aryl azides. In contrast, the treatment of MnO-terphenyl-O with iminoiodinane PhINTs (Ts = toluenesulfonyl) was consistent with the formation of a metal-nitrene complex. In the presence of styrene, the reaction led to the formation of aziridine. Combining varying ratios of styrene and PhINTs in different solvents with 10 mol% of MnO-terphenyl-O at room temperature produced 2-phenylaziridine in up to a 79% yield. Exploration of the reactivity of MnO-terphenyl-O with various olefins revealed (1) moderate aziridination yields for -substituted styrenes, irrespective of the electronic nature of the substituent; (2) moderate yield for 1,1'-disubstituted α-methylstyrene; (3) no aziridination for aliphatic α-olefins; (4) complex product mixtures for the β-substituted styrenes. DFT calculations suggest that iminoiodinane is oxidatively added upon binding to Mn, and the resulting formal imido intermediate has a high-spin Mn(III) center antiferromagnetically coupled to an imidyl radical. This imidyl radical reacts with styrene to form a sextet intermediate that readily reductively eliminates the formation of a sextet Mn(II) aziridine complex.

摘要

用庞大的螯合双(醇盐)配体[1,1':4',1''-三联苯]-2,2''-二基双(二苯甲醇)(H[O-三联苯-O])处理Mn(N(SiMe))(THF),形成了一个跷跷板型锰(II)配合物MnO-三联苯-O,并用结构、光谱、磁性和分析方法对其进行了表征。研究了MnO-三联苯-O与各种氮宾前体的反应活性。未观察到MnO-三联苯-O与芳基叠氮化物之间的反应。相反,用亚碘酰苯PhINTs(Ts = 甲苯磺酰基)处理MnO-三联苯-O与金属氮宾配合物的形成一致。在苯乙烯存在下,该反应导致氮丙啶的形成。在室温下,将不同比例的苯乙烯和PhINTs在不同溶剂中与10 mol%的MnO-三联苯-O混合,可产生高达79%产率的2-苯基氮丙啶。对MnO-三联苯-O与各种烯烃反应活性的探索表明:(1)对于α-取代苯乙烯,无论取代基的电子性质如何,氮丙啶化产率适中;(2)对于1,1'-二取代的α-甲基苯乙烯,产率适中;(3)对于脂肪族α-烯烃,无氮丙啶化反应;(4)对于β-取代苯乙烯,产物混合物复杂。密度泛函理论计算表明,亚碘酰苯在与Mn结合时发生氧化加成,所得的形式亚氨基中间体具有一个高自旋Mn(III)中心,该中心与一个亚氨基自由基反铁磁耦合。该亚氨基自由基与苯乙烯反应形成一个六重态中间体,该中间体很容易通过还原消除形成六重态Mn(II)氮丙啶配合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bae5/9505844/b63d2d06a19e/molecules-27-05751-sch001.jpg

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