表面改性
锆
复分解
位阻效应
吡啶
键裂
离域电子
反应性(心理学)
共轭体系
组合化学
配体(生物化学)
还原消去
芳香性
化学
卡宾
光化学
电子效应
催化作用
联吡啶
劈理(地质)
钌
环丙烷化
氯化物
环戊二烯基络合物
立体化学
Stille反应
有机合成
有机化学
作者
Kailing Han,Jiajia Ma,Yumeng Chen,Wenshuang Huang,Jingyi An,Wei‐Hai Fang,Ganglong Cui,Shaowei Hu
标识
DOI:10.1002/anie.202518402
摘要
) zirconium alkylidene complexes under mild conditions. Experimental and computational studies reveal that these transformations proceed via highly reactive [Zr]═C species instead of alkylidyne pathways, forming acyclic Zr-imido-triene complexes that undergo imido/oxo exchange with acetone. This enables a concise conversion of pyridines into conjugated iminotrienes that otherwise require multistep syntheses. The ancillary ligand dictates divergent pathways: alkyl-, alkoxide-, or aryloxide-containing alkylidenes selectively promote ring-opening functionalization, whereas the chloride analogue triggers rare reductive homocoupling of pyridines to bipyridine dianions. This ligand-controlled reactivity arises from steric and electronic effects of the chloride variant, facilitating C─H activation and C─C bond formation. These findings demonstrate a novel approach to aromatic C─N bond scission and dual functionalization at both termini of the opened pyridine rings, along with a reductive homocoupling pathway to bipyridine dianions, providing new opportunities for catalytic transformations of aromatic N-heterocycles.
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