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Unanticipated Cleavage of 2-Nitrophenyl-Substituted N-Formyl Pyrazolines under Bechamp Conditions: Unveiling the Synthesis of 2-Aryl Quinolines and Their Mechanistic Exploration via DFT Studies.


ABSTRACT: We herein report for the first time an unusual decomposition of 2-nitrophenyl-substituted N-formyl pyrazolines under Bechamp reduction condition employed to yield 2-aryl quinolines exclusively instead of pyrazolo[1,5-c]quinazolines. The reaction investigation suggests acid-mediated cleavage of 1 followed by a retro-Michael addition, and a subsequent in situ intramolecular reductive cyclization through a modified Friedlander mechanism afforded 2-aryl quinolines (2) in good yields. The proposed mechanistic pathways were supported via experimental evidence and density functional theory studies. B3LYP/6-31+G(d) analysis indicated the involvement of trans-2-hydroxyaminochalcone as a key intermediate and its isomerization and cyclization, leading to unusual product formation.

SUBMITTER: Joshi G 

PROVIDER: S-EPMC6643473 | biostudies-literature | 2018 Dec

REPOSITORIES: biostudies-literature

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Unanticipated Cleavage of 2-Nitrophenyl-Substituted <i>N</i>-Formyl Pyrazolines under Bechamp Conditions: Unveiling the Synthesis of 2-Aryl Quinolines and Their Mechanistic Exploration via DFT Studies.

Joshi Gaurav G   Wani Aabid Abdullah AA   Sharma Sahil S   Bhutani Priyadeep P   Bharatam Prasad V PV   Paul Atish T AT   Kumar Raj R  

ACS omega 20181228 12


We herein report for the first time an unusual decomposition of 2-nitrophenyl-substituted <i>N</i>-formyl pyrazolines under Bechamp reduction condition employed to yield 2-aryl quinolines exclusively instead of pyrazolo[1,5-<i>c</i>]quinazolines. The reaction investigation suggests acid-mediated cleavage of <b>1</b> followed by a retro-Michael addition, and a subsequent in situ intramolecular reductive cyclization through a modified Friedlander mechanism afforded 2-aryl quinolines (<b>2</b>) in  ...[more]

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