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Aerial Oxygen-Driven Selenocyclization of O-Vinylanilides Mediated by Coupled Fe3+/Fe2+ and I2/I- Redox Cycles.


ABSTRACT: In the past decade, selenocyclization has been extensively exploited for the preparation of a wide range of selenylated heterocycles with versatile activities. Previously, selenium electrophile-based and FeCl3-promoted methods were employed for the synthesis of selenylated benzoxazines. However, these methods are limited by starting material availability and low atomic economy, respectively. Inspired by the recent catalytic selenocyclization approaches based on distinctive pathways, we rationally constructed an efficient and greener double-redox catalytic system for the access to diverse selenylated benzoxazines. The coupling of I2/I- and Fe3+/Fe2+ catalytic redox cycles enables aerial O2 to act as the driving force to promote the selenocyclization. Control and test redox experiments confirmed the roles of each component in the catalytic system, and a PhSeI-based pathway is proposed for the selenocyclization process.

SUBMITTER: Zhang HY 

PROVIDER: S-EPMC9656128 | biostudies-literature | 2022 Oct

REPOSITORIES: biostudies-literature

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Aerial Oxygen-Driven Selenocyclization of <i>O</i>-Vinylanilides Mediated by Coupled Fe<sup>3+</sup>/Fe<sup>2+</sup> and I<sub>2</sub>/I<sup>-</sup> Redox Cycles.

Zhang Hao-Yuan HY   Zeng Tong-Tong TT   Xie Zhen-Biao ZB   Dong Ying-Ying YY   Ma Cha C   Gong Shan-Shan SS   Sun Qi Q  

Molecules (Basel, Switzerland) 20221031 21


In the past decade, selenocyclization has been extensively exploited for the preparation of a wide range of selenylated heterocycles with versatile activities. Previously, selenium electrophile-based and FeCl<sub>3</sub>-promoted methods were employed for the synthesis of selenylated benzoxazines. However, these methods are limited by starting material availability and low atomic economy, respectively. Inspired by the recent catalytic selenocyclization approaches based on distinctive pathways, w  ...[more]

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