Literature DB >> 22672002

C-H bond functionalization via hydride transfer: formation of α-arylated piperidines and 1,2,3,4-tetrahydroisoquinolines via stereoselective intramolecular amination of benzylic C-H bonds.

Paul A Vadola1, Ignacio Carrera, Dalibor Sames.   

Abstract

We here report a study of the intramolecular amination of class="Chemical">sp(3) C-H bonds via the <class="Chemical">span class="Chemical">hydride transfer cyclization of N-tosylimines (HT-amination). In this transformation, 5-aryl aldehydes are subjected to N-toluenesulfonamide in the presence of BF(3)·OEt(2) to effect imine formation and HT-cyclization, leading to 2-arylpiperidines and 3-aryl-1,2,3,4-tetrahydroisoquinolines in a one-pot procedure. We examined the reactivity of a range of aldehyde substrates as a function of their conformational flexibility. Substrates of higher conformational rigidity were more reactive, giving higher yields of the desired products. However, a single substituent on the alkyl chain linking the N-tosylimine and the benzylic sp(3) C-H bonds was sufficient for HT-cyclization to occur. In addition, an examination of various arenes revealed that the electronic character of the hydridic C-H bonds dramatically affects the efficiency of the reaction. We also found that this transformation is highly stereoselective; 2-substituted aldehydes yield cis-2,5-disubstituted piperidines, while 3-substituted aldehydes afford trans-2,4-disubstituted piperidines. The stereoselectivity is a consequence of thermodynamic control. The pseudoallylic strain between the arene and tosyl group on the piperidine ring is proposed to rationalize the greater stability of the isomer with the aryl ring in the axial position. This preferential placement of the arene is proposed to affect the observed stereoselectivity.

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Year:  2012        PMID: 22672002      PMCID: PMC3433405          DOI: 10.1021/jo300635m

Source DB:  PubMed          Journal:  J Org Chem        ISSN: 0022-3263            Impact factor:   4.354


  42 in total

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8.  [1,5]-Hydride transfer/cyclizations on alkynyl Fischer carbene complexes: synthesis of 1,2-dihydroquinolinyl carbene complexes and cascade reactions.

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9.  Lewis acid catalyzed formation of tetrahydroquinolines via an intramolecular redox process.

Authors:  Sandip Murarka; Chen Zhang; Marlena D Konieczynska; Daniel Seidel
Journal:  Org Lett       Date:  2009-01-01       Impact factor: 6.005

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  3 in total

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Journal:  Chemistry       Date:  2015-07-28       Impact factor: 5.236

2.  Lewis acid-catalyzed redox-neutral amination of 2-(3-pyrroline-1-yl)benzaldehydes via intramolecular [1,5]-hydride shift/isomerization reaction.

Authors:  Chun-Huan Jiang; Xiantao Lei; Le Zhen; Hong-Jin Du; Xiaoan Wen; Qing-Long Xu; Hongbin Sun
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3.  Highly diastereoselective synthesis of tricyclic fused-pyrans by sequential hydride shift mediated double C(sp3)-H bond functionalization.

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