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Fragile intermediate identification and reactivity elucidation in electrochemical oxidative α-C(sp(3))–H functionalization of tertiary amines

The direct α-C(sp(3))–H functionalization of widely available tertiary amines holds promise for the rapid construction of complex amine architectures. The activation of C(sp(3))–H bonds through electron transfer and proton transfer by oxidants, photoredox catalysis and electrochemical oxidation have...

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Autores principales: Liang, Kailun, Zhang, Dongmei, Su, Yanming, Lu, Lijun, Hu, Jun, Chen, Yi-Hung, Zhang, Xinxing, Lei, Aiwen, Yi, Hong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10094091/
https://www.ncbi.nlm.nih.gov/pubmed/37063790
http://dx.doi.org/10.1039/d3sc00527e
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author Liang, Kailun
Zhang, Dongmei
Su, Yanming
Lu, Lijun
Hu, Jun
Chen, Yi-Hung
Zhang, Xinxing
Lei, Aiwen
Yi, Hong
author_facet Liang, Kailun
Zhang, Dongmei
Su, Yanming
Lu, Lijun
Hu, Jun
Chen, Yi-Hung
Zhang, Xinxing
Lei, Aiwen
Yi, Hong
author_sort Liang, Kailun
collection PubMed
description The direct α-C(sp(3))–H functionalization of widely available tertiary amines holds promise for the rapid construction of complex amine architectures. The activation of C(sp(3))–H bonds through electron transfer and proton transfer by oxidants, photoredox catalysis and electrochemical oxidation have received wide attention recently. In these reactions, the direct capture and identification of the key reactive radical intermediates are technically difficult due to their short life-time. Herein, an online electrochemical mass spectrometry (MS) methodology was utilized to probe the short-lived intermediates in the electrochemical oxidative α-C(sp(3))–H functionalization of tertiary amines. The resulting electrochemical oxidation intermediates, α-amino radical cation and iminium cation were successfully detected. Further, the α-amino C(sp(3)) radical added to the double bond of a phenyl trans-styryl sulfone, yielding another C(sp(3)) radical that leads to the final vinylation. Based on the mass spectrometric elucidation of the reactivity of the α-amino radical, a scale-up electrochemical radical vinylation methodology was established, with which a large variety of allylic amines with broad functional group tolerance were synthesized.
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spelling pubmed-100940912023-04-13 Fragile intermediate identification and reactivity elucidation in electrochemical oxidative α-C(sp(3))–H functionalization of tertiary amines Liang, Kailun Zhang, Dongmei Su, Yanming Lu, Lijun Hu, Jun Chen, Yi-Hung Zhang, Xinxing Lei, Aiwen Yi, Hong Chem Sci Chemistry The direct α-C(sp(3))–H functionalization of widely available tertiary amines holds promise for the rapid construction of complex amine architectures. The activation of C(sp(3))–H bonds through electron transfer and proton transfer by oxidants, photoredox catalysis and electrochemical oxidation have received wide attention recently. In these reactions, the direct capture and identification of the key reactive radical intermediates are technically difficult due to their short life-time. Herein, an online electrochemical mass spectrometry (MS) methodology was utilized to probe the short-lived intermediates in the electrochemical oxidative α-C(sp(3))–H functionalization of tertiary amines. The resulting electrochemical oxidation intermediates, α-amino radical cation and iminium cation were successfully detected. Further, the α-amino C(sp(3)) radical added to the double bond of a phenyl trans-styryl sulfone, yielding another C(sp(3)) radical that leads to the final vinylation. Based on the mass spectrometric elucidation of the reactivity of the α-amino radical, a scale-up electrochemical radical vinylation methodology was established, with which a large variety of allylic amines with broad functional group tolerance were synthesized. The Royal Society of Chemistry 2023-03-18 /pmc/articles/PMC10094091/ /pubmed/37063790 http://dx.doi.org/10.1039/d3sc00527e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Liang, Kailun
Zhang, Dongmei
Su, Yanming
Lu, Lijun
Hu, Jun
Chen, Yi-Hung
Zhang, Xinxing
Lei, Aiwen
Yi, Hong
Fragile intermediate identification and reactivity elucidation in electrochemical oxidative α-C(sp(3))–H functionalization of tertiary amines
title Fragile intermediate identification and reactivity elucidation in electrochemical oxidative α-C(sp(3))–H functionalization of tertiary amines
title_full Fragile intermediate identification and reactivity elucidation in electrochemical oxidative α-C(sp(3))–H functionalization of tertiary amines
title_fullStr Fragile intermediate identification and reactivity elucidation in electrochemical oxidative α-C(sp(3))–H functionalization of tertiary amines
title_full_unstemmed Fragile intermediate identification and reactivity elucidation in electrochemical oxidative α-C(sp(3))–H functionalization of tertiary amines
title_short Fragile intermediate identification and reactivity elucidation in electrochemical oxidative α-C(sp(3))–H functionalization of tertiary amines
title_sort fragile intermediate identification and reactivity elucidation in electrochemical oxidative α-c(sp(3))–h functionalization of tertiary amines
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10094091/
https://www.ncbi.nlm.nih.gov/pubmed/37063790
http://dx.doi.org/10.1039/d3sc00527e
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