Handbook of CH-Functionalization 2022
DOI: 10.1002/9783527834242.chf0066
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(Hetero)Aryl CH Amination via Organic Electrochemistry

Abstract: Aromatic amines are essential compounds found in various natural products, drugs, and materials. Their widespread presence has motivated scientists worldwide to explore new avenues for the development of aromatic CN bond formation methodologies. Since the turn of the century, there has been a growing impetus to develop sustainable molecular syntheses. Having been recognized as an effective tool to control the redox events and flow of electrons between reactive species, organic electrocatalysis has been revive… Show more

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“…The electrochemical transformations can be conducted directly at the electrode or indirectly using a redox mediator in the solution, and the latter can enhance efficiency and selectivity under milder conditions. Thus, catalytic asymmetric electrosynthesis can be realized by the combination of a chiral catalysts and a redox mediator ( Yan et al, 2017 ; Shah and Ngai, 2022 ). This approach is more economically feasible and versatile than the use of specialized chiral electrodes, electrolytes, solvents or pre-modified chiral substrates ( Arnaboldi et al, 2018 ).…”
Section: Asymmetric Electrochemical Catalysismentioning
confidence: 99%
“…The electrochemical transformations can be conducted directly at the electrode or indirectly using a redox mediator in the solution, and the latter can enhance efficiency and selectivity under milder conditions. Thus, catalytic asymmetric electrosynthesis can be realized by the combination of a chiral catalysts and a redox mediator ( Yan et al, 2017 ; Shah and Ngai, 2022 ). This approach is more economically feasible and versatile than the use of specialized chiral electrodes, electrolytes, solvents or pre-modified chiral substrates ( Arnaboldi et al, 2018 ).…”
Section: Asymmetric Electrochemical Catalysismentioning
confidence: 99%