首页> 美国卫生研究院文献>Molecules >Porphyrin Cobalt(III) Nitrene Radical Reactivity; Hydrogen Atom Transfer from Ortho-YH Substituents to the Nitrene Moiety of Cobalt-Bound Aryl Nitrene Intermediates (Y = O NH)
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Porphyrin Cobalt(III) Nitrene Radical Reactivity; Hydrogen Atom Transfer from Ortho-YH Substituents to the Nitrene Moiety of Cobalt-Bound Aryl Nitrene Intermediates (Y = O NH)

机译:卟啉钴(III)的硝基自由基反应性;氢原子从邻-YH取代基转移到钴结合的芳基硝基硝基中间体(Y = ONH)的硝基部分

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摘要

In the field of cobalt(II) porphyrin-catalyzed metallo-radical reactions, organic azides have emerged as successful nitrene transfer reagents. In the pursuit of employing ortho-YH substituted (Y = O, NH) aryl azides in Co(II) porphyrin-catalyzed nitrene transfer reactions, unexpected hydrogen atom transfer (HAT) from the OH or NH2 group in the ortho-position to the nitrene moiety of the key radical-intermediate was observed. This leads to formation of reactive ortho-iminoquinonoid (Y = O) and phenylene diimine (Y = NH) species. These intermediates convert to subsequent products in non-catalyzed reactions, as is typical for these free organic compounds. As such, the observed reactions prevent the anticipated cobalt-mediated catalytic radical-type coupling of the nitrene radical intermediates to alkynes or alkenes. Nonetheless, the observed reactions provide valuable insights into the reactivity of transition metal nitrene-radical intermediates, and give access to ortho-iminoquinonoid and phenylene diimine intermediates from ortho-YH substituted aryl azides in a catalytic manner. The latter can be employed as intermediates in one-pot catalytic transformations. From the ortho-hydroxy aryl azide substrates both phenoxizinones and benzoxazines could be synthesized in high yields. From the ortho-amino aryl azide substrates azabenzene compounds were obtained as the main products. Computational studies support these observations, and reveal that HAT from the neighboring OH and NH2 moiety to the nitrene radical moiety has a low energy barrier.
机译:在钴(II)卟啉催化的金属自由基反应领域,有机叠氮化物已成为成功的腈转移试剂。为了在Co(II)卟啉催化的腈转移反应中使用邻-YH取代的(Y = O,NH)芳基叠氮化物,意外的氢原子从OH-或NH2基团向邻位转移(HAT)观察到关键自由基中间体的亚硝基部分。这导致形成反应性邻亚氨基醌(Y = O)和亚苯基二亚胺(Y = NH)。这些中间体在非催化反应中转化为后续产物,如这些游离有机化合物的典型特征。这样,观察到的反应阻止了预期的钴介导的亚硝基自由基中间体与炔烃或烯烃的催化自由基类型的偶联。然而,观察到的反应提供了对过渡金属腈-自由基中间体的反应性的有价值的见解,并允许以催化方式从邻-YH取代的芳基叠氮化物获得邻亚氨基亚醌基和亚苯基二亚胺中间体。后者可用作一锅催化转化的中间体。从邻羟基芳基叠氮化物底物可以高收率合成苯恶嗪酮和苯并恶嗪。从邻氨基芳基叠氮化物底物获得氮杂苯化合物作为主要产物。计算研究支持了这些观察结果,并揭示了从相邻的OH和NH2部分到亚硝基自由基部分的HAT的能垒很低。

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