化学
过渡金属
催化作用
金属
有机化学
高分子化学
组合化学
作者
Dragoş‐Adrian Roşca,Leif E. Hertwig,Felix J. Becker
标识
DOI:10.1002/ejoc.202401403
摘要
Abstract The [2+2]‐cycloaddition of olefins and alkynes stands out as a versatile and atom‐economical strategy for synthesizing cyclobutane and cyclobutene building blocks, which are challenging to access through other synthetic methods. While photochemical approaches have traditionally dominated this field, thermally‐driven methods employing transition metals offer distinct advantages, including decreased reliance on pre‐functionalized substrates and improved scalability. This review explores the underlying principles of metal‐catalyzed [2+2]‐cycloadditions and highlights recent advances in thermally‐driven approaches for the efficient synthesis of cyclobutane and cyclobutene frameworks. Particular attention is given to electronically unbiased substrates, which remain a significant challenge for photochemical approaches.
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