羰基化
化学
烯烃
串联
双金属片
亚甲基环丙烷
催化作用
组合化学
功能群
原子经济
过渡金属
键裂
戒指(化学)
有机合成
有机化学
还原消去
劈理(地质)
复分解
Atom(片上系统)
硫黄
区域选择性
甲基
连接器
激进的
立体化学
作者
Jia‐Ying Li,Jin‐Bao Peng
摘要
Small‐ring compounds have garnered significant attention in organic synthesis due to their high reactivity. Methylenecyclopropane (MCP), a unique C 3 ‐synthon combining a highly strained three‐membered ring with a terminal alkene, undergoes controllable ring‐opening and efficient transformation under transition metal catalysis. Carbonylation reactions, characterized by high atom economy and excellent functional group compatibility, represent a core methodology for constructing carbonyl compounds. Combining MCP with carbonylation reactions leverages the synergistic advantages of strained‐ring opening and alkene difunctionalization, enabling one‐step formation of multiple bonds, precise site‐selective control, and efficient construction of complex fused‐ring and medium‐ring skeletons. This review summarizes the advancements in transition‐metal‐catalyzed carbonylation of MCPs, including asymmetric carbonylation, selective CC bond cleavage carbonylation, ring‐opening carbonylative cyclization, and strain‐driven cycloadditions. It details catalytic systems based on Rh, Pd, Cu, Mn, Ru (both single‐metal and bimetallic cooperative systems) and their ring‐opening mechanisms. Key developments in asymmetric hydroformylation, borylcarbonylation, dialkoxycarbonylation, and tandem cyclization are highlighted.
科研通智能强力驱动
Strongly Powered by AbleSci AI