Laboratory of Molecular Recognition and Synthesis, Department of Chemistry, Zhejiang University, Hangzhou, Zhejiang, China.
Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian, China.
Nat Chem. 2022 Oct;14(10):1185-1192. doi: 10.1038/s41557-022-01017-9. Epub 2022 Aug 18.
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.
但他林是苯的构象异构体,由一个具有两个非环共轭亚甲基单元的环丁烯骨架组成。由于内在的高应变能和反芳香性,因此制备但他林化合物一直是但他林化学发展的基本问题。在这里,已经开发了一种有效的钯催化偶联协议,涉及炔丙基化合物,为对称但他林衍生物的快速组装提供了一种实用且通用的策略。基于机理研究,已经证实了两种互补的机制,都涉及钯催化。随着机理的揭示,非对称但他林的合成也已实现。该策略的优点包括对广泛的炔丙基分子的耐受性、温和的反应条件、简单的催化体系和易于规模化。作为环丁烯衍生物的平台分子,这些产物的合成潜力也得到了证明。