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Non-metal-mediated N-oxyl radical (TEMPO)-induced acceptorless dehydrogenation of N-heterocycles via electrocatalysis.


ABSTRACT: The development of protocols for direct catalytic acceptorless dehydrogenation of N-heterocycles with metal-free catalysts holds the key to difficulties in green and sustainable chemistry. Herein, an N-oxyl radical (TEMPO) acting as an oxidant in combination with electrochemistry is used as a synthesis system under neutral conditions to produce N-heterocycles such as benzimidazole and quinazolinone. The key feature of this protocol is the utilization of the TEMPO system as an inexpensive and easy to handle radical surrogate that can effectively promote the dehydrogenation reaction. Mechanistic studies also suggest that oxidative TEMPOs redox catalytic cycle participates in the dehydrogenation of 2,3-dihydro heteroarenes.

SUBMITTER: Hou H 

PROVIDER: S-EPMC8981507 | biostudies-literature | 2022 Feb

REPOSITORIES: biostudies-literature

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Non-metal-mediated <i>N</i>-oxyl radical (TEMPO)-induced acceptorless dehydrogenation of N-heterocycles <i>via</i> electrocatalysis.

Hou Huiqing H   Ma Xinhua X   Ye Yaling Y   Wu Mei M   Shi Sunjie S   Zheng Wenhe W   Lin Mei M   Sun Weiming W   Ke Fang F  

RSC advances 20220216 9


The development of protocols for direct catalytic acceptorless dehydrogenation of N-heterocycles with metal-free catalysts holds the key to difficulties in green and sustainable chemistry. Herein, an <i>N</i>-oxyl radical (TEMPO) acting as an oxidant in combination with electrochemistry is used as a synthesis system under neutral conditions to produce N-heterocycles such as benzimidazole and quinazolinone. The key feature of this protocol is the utilization of the TEMPO system as an inexpensive  ...[more]

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