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Synthesis of cyclopentenimines from N-allyl ynamides via a tandem aza-Claisen rearrangement-carbocyclization sequence

机译:通过串联氮杂-克莱森重排-碳环化序列由N-烯丙基乙酰胺合成环戊烯胺

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We describe here details of our investigations into Pd-catalyzed and thermal aza-Claisen-carbocyclizations of N-allyl ynamides to prepare a variety of α,β-unsaturated cyclopentenimines. The nature of the ynamide electron-withdrawing group and β-substituent plays critical roles in the success of this tandem cascade. With N-sulfonyl ynamides, the use of palladium catalysis is required, as facile 1,3-sulfonyl shifts dominate under thermal conditions. However, since no analogous 1,3-phosphoryl shift is operational, N-phosphoryl ynamides could be used to prepare similar cyclopentenimines under thermal conditions through zwitter ionic intermediates that undergo N-promoted H-shifts. Alternatively, by employing ynamides bearing tethered carbon nucleophiles, the zwitter ionic intermediates could be intercepted, giving rise rapidly to more complex fused bi- and tricyclic scaffolds.
机译:我们在这里描述了我们对P催化的N-烯丙基炔酰胺的热催化氮杂-克莱森碳环化反应以制备各种α,β-不饱和环戊烯亚胺的研究细节。乙酰胺基吸电子基团和β-取代基的性质在串联级联反应的成功中起着至关重要的作用。对于N-磺酰基乙酰胺,由于在热条件下容易进行的1,3-磺酰基转移占主导,因此需要使用钯催化。然而,由于没有类似的1,3-磷酰基转移起作用,因此可以在热条件下通过经历N-促进的H转移的两性离子中间体将N-磷酰基乙酰胺用于制备类似的环戊烯亚胺。或者,通过使用带有束缚的碳亲核试剂的酰胺,两性离子中间体可以被截获,从而迅速产生更复杂的稠合双环和三环骨架。

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