Palladium-Catalyzed Olefin Isomerization Reactions

Jia-Wei Weng ( East China University of Science and Technology, Shanghai, 200237, China )

https://doi.org/10.37155/2972-483X-0302-1

简介

This paper reviews the fundamental theory, catalyst design and optimization, influencing factors, and recent advances in palladium-catalyzed olefin isomerization reactions. The types of olefin isomerization, the catalytic mechanism of palladium catalysts, and strategies for catalyst development and improvement are discussed in detail. The influence of substrate structure and reaction conditions on isomerization efficiency is analyzed, and approaches to optimize catalytic systems are proposed. Additionally, the paper highlights practical applications of palladium-catalyzed olefin isomerization in the synthesis of pharmaceutical intermediates, total synthesis of natural products, preparation of polymer materials, and in the fields of energy and environmental science. These studies demonstrate that palladium-catalyzed olefin isomerization reactions have broad application prospects in organic synthesis, materials science, and energy conversion.

关键字

Palladium catalysis; olefins; isomerization reactions

全文

PDF

参考文献

[1] Chen Hongchao, Wu Yichen, Yu Yang, et al. Palladium-catalyzed isomerization of olefins[J]. Organic Chemistry, 2022,42(3):742-757.
[2] Xu Pengcheng, Liu Yuyu,Qian Bo,et al. Palladium-catalyzed carbonylation of olefins with triazinylalkanhydroamines[J]. Molecular Catalysis,2023,37(3):225-233.
[3] Zhang Yurong, Wang Han, Mao Yongjun,et al. Ni-Catalyzed Three-Component Coupling Reaction of Butadiene, Aldimines and Alkenylboronic Acids[J]. Organic Chemistry.2022,42(4).1198-1209.DOI:10.6023/cjoc202110042.
[4]Wang Zichao, Xu Yujun, Shi Shiliang. Base-promoted rapid hydrosilylation reaction of aldimines[J]. Organic Chemistry.2020,40(10).3463-3466.DOI:10.6023/cjoc202005085.

版权所有 © 2025 Jia-Wei Weng Creative Commons License 出版时间:2025-04-30
本作品采用以下许可协议授权: 知识共享 署名 4.0 国际许可协议