化学
环丁烯
钯
催化作用
组合化学
分子
共轭体系
计算化学
戒指(化学)
纳米技术
联轴节(管道)
亚甲基
环应变
机制(生物学)
简单(哲学)
立体化学
航程(航空)
反应机理
有机合成
亚甲基桥
偶联反应
作者
Xin Huang,Bingzhi Chen,Pengbin Li,Ding‐Wei Ji,Jinxian Liu,Hao Zheng,Sa‐Na Yang,Yan‐Cheng Hu,Boshun Wan,Xiang‐Ping Hu,Chunling Fu,Yankai Huang,Jian Zheng,Qing‐An Chen,Shengming Ma
出处
期刊:Nature Chemistry
[Springer Nature]
日期:2022-08-18
卷期号:14 (10): 1185-1192
被引量:33
标识
DOI:10.1038/s41557-022-01017-9
摘要
Butafulvene is a constitutional isomer of benzene, comprising a cyclobutene skeleton bearing two exocyclic conjugated methylene units. As a result of the intrinsic high strain energy and anti-aromaticity, the preparation of butafulvene compounds has been a fundamental issue for the development of butafulvene chemistry. Here an efficient palladium-catalysed coupling protocol involving propargylic compounds has been developed, providing a solid and versatile strategy for the rapid assembly of symmetric butafulvene derivatives. Based on mechanistic studies, two complementary mechanisms, both involving palladium catalysis, have been confirmed. With the mechanism unveiled, the synthesis of non-symmetric butafulvenes has also been achieved. Advantages of this strategy include tolerance to a wide range of propargylic molecules, mild reaction conditions, simple catalytic systems and easy scalability. The synthetic potential of the products as platform molecules for cyclobutene derivatives has also been demonstrated.
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