The functionalization of olefins to form added-value compounds is a cornerstone of modern organic chemistry, promoting the synthesis of complex molecules from simple feedstock materials. In parallel, electrochemistry has emerged as a powerful and sustainable technique for enabling challenging transformations under mild conditions by generating reactive intermediates in a controlled manner. This review highlights recent advances in oxidative electrochemical methods for olefin functionalization, showcasing key developments that underscore the versatility of this approach. Using selected representative examples, we explore diverse mechanistic pathways, bond-forming strategies, and the integration of electrochemical techniques with catalytic systems. By providing a concise overview of this rapidly evolving field, we aim to inspire further innovation in electrochemical methodologies to expand the frontiers of olefin chemistry.

Qi, C., Laktsevich-Iskryk, M., Mazzarella, D. (2025). Navigating electrochemical oxidative functionalization of olefins: selected mechanistic and synthetic examples. CHEMICAL COMMUNICATIONS, 61(22), 4265-4278 [10.1039/d4cc06306f].

Navigating electrochemical oxidative functionalization of olefins: selected mechanistic and synthetic examples

Mazzarella, Daniele
2025-03-11

Abstract

The functionalization of olefins to form added-value compounds is a cornerstone of modern organic chemistry, promoting the synthesis of complex molecules from simple feedstock materials. In parallel, electrochemistry has emerged as a powerful and sustainable technique for enabling challenging transformations under mild conditions by generating reactive intermediates in a controlled manner. This review highlights recent advances in oxidative electrochemical methods for olefin functionalization, showcasing key developments that underscore the versatility of this approach. Using selected representative examples, we explore diverse mechanistic pathways, bond-forming strategies, and the integration of electrochemical techniques with catalytic systems. By providing a concise overview of this rapidly evolving field, we aim to inspire further innovation in electrochemical methodologies to expand the frontiers of olefin chemistry.
11-mar-2025
Pubblicato
Rilevanza internazionale
Recensione
Esperti anonimi
Settore CHEM-05/A - Chimica organica
English
Con Impact Factor ISI
Qi, C., Laktsevich-Iskryk, M., Mazzarella, D. (2025). Navigating electrochemical oxidative functionalization of olefins: selected mechanistic and synthetic examples. CHEMICAL COMMUNICATIONS, 61(22), 4265-4278 [10.1039/d4cc06306f].
Qi, C; Laktsevich-Iskryk, M; Mazzarella, D
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/436044
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