1,4-Difunctionalizations of 1,3-Enynes:New Opportunities for the Synthesis of Allenes via Photochemistry and Electrochemistry

Abstract

Allenes, characterized by their unique linear arrangements of orthogonal π-systems and axial chirality, represent an important class of structural motifs widely found in bioactive natural products, pharmaceuticals, and functional materials. Despite their significance, conventional synthetic approaches often suffer from limitations including harsh conditions, narrow scopes, and insufficient stereocontrol. In this context, the 1,4difunctionalization of 1,3-enynes has emerged as a powerful and versatile strategy that enables efficient and selective access to highly functionalized allenes under mild conditions. This review systematically summarizes recent advances in catalytic methodologies, including photoredox/copper, photoredox/nickel, photoredox/NHC dual catalysis, single photoredox systems, electrochemical approaches, and asymmetric catalytic platforms, which leverage radical intermediates to overcome traditional limitations under photochemical and electrochemical conditions. These strategies facilitate the construction of tetrasubstituted allenes with excellent chemo-, regio-, and stereoselectivity, while supporting broad substrate versatility and functional group tolerance. Key mechanisms involved radical selective addition, metal-catalyzed cross-coupling, and NHC-catalyzed radical coupling are discussed in detail, highlighting their roles in achieving sustainable and efficient reaction designs. Furthermore, this review outlines future research directions aimed at expanding radical precursor diversity, employing earth-abundant metals, and advancing electrochemical and enantioselective techniques, providing a comprehensive resource for developing novel synthetic routes to allene-based functional molecules.

Article information

Article type
Review Article
Submitted
31 Oct 2025
Accepted
22 Dec 2025
First published
23 Dec 2025

Chem. Commun., 2026, Accepted Manuscript

1,4-Difunctionalizations of 1,3-Enynes:New Opportunities for the Synthesis of Allenes via Photochemistry and Electrochemistry

K. Peng, X. Yao, Y. Chen and G. Deng, Chem. Commun., 2026, Accepted Manuscript , DOI: 10.1039/D5CC06209H

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