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Gold-catalyzed (4+3)-annulations of 2-alkenyl-1-alkynylbenzenes with anthranils with alkyne-dependent chemoselectivity: skeletal rearrangement versus non-rearrangement.


ABSTRACT: Two distinct (4+3)-nitroxy annulations between 1,5-enynes and anthranils have been developed to access tetrahydro-1H-benzo[b]azepine derivatives; the chemoselectivity varies with the types of alkynes. Terminal alkyne substrates deliver benzo[b]azepine derivatives via a novel skeletal rearrangement while internal 1,5-enynes afford products without a rearrangement process. To elucidate the mechanism of rearrangement, we performed 13C- and 2H-labeling experiments to identify the gold-containing isobenzofulvene intermediates, but their formation relies on the presence of anthranils.

SUBMITTER: Singh RR 

PROVIDER: S-EPMC6349068 | biostudies-literature | 2019 Jan

REPOSITORIES: biostudies-literature

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Gold-catalyzed (4+3)-annulations of 2-alkenyl-1-alkynylbenzenes with anthranils with alkyne-dependent chemoselectivity: skeletal rearrangement <i>versus</i> non-rearrangement.

Singh RahulKumar Rajmani RR   Skaria Manisha M   Chen Liang-Yu LY   Cheng Mu-Jeng MJ   Liu Rai-Shung RS  

Chemical science 20181112 4


Two distinct (4+3)-nitroxy annulations between 1,5-enynes and anthranils have been developed to access tetrahydro-1<i>H</i>-benzo[<i>b</i>]azepine derivatives; the chemoselectivity varies with the types of alkynes. Terminal alkyne substrates deliver benzo[<i>b</i>]azepine derivatives <i>via</i> a novel skeletal rearrangement while internal 1,5-enynes afford products without a rearrangement process. To elucidate the mechanism of rearrangement, we performed <sup>13</sup>C- and <sup>2</sup>H-labeli  ...[more]

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