反应性(心理学)
化学
位阻效应
钳子运动
异构化
配体(生物化学)
均分解
氧化还原
选择性
光化学
化学计量学
烷基
钳形配体
路易斯酸
反应中间体
氟化物
反应机理
烷基酚
双键
氧化加成
化学选择性
组合化学
铝
主组元素
表征(材料科学)
光诱导电子转移
立体化学
沮丧的刘易斯对
催化作用
磷化氢
电子效应
高分子化学
作者
Liancheng He,Shanshan Kong,Wanwan Jia,Xinping Wang
标识
DOI:10.1002/anie.202524691
摘要
This work reports the synthesis, full characterization, and multifaceted reactivity of a highly reactive aluminum complex (2·Et2O) supported by a sterically hindered, redox-active pincer ligand. Characterization by X-ray crystallography and spectroscopic methods confirmed its molecular structure, while Gutmann-Beckett studies and calculated fluoride ion affinity quantified its significant Lewis acidity. The reactivity profile of 2·Et2O is remarkably diverse: it undergoes facile photoinduced species formation, activates the O─H bond via metal-ligand cooperative heterolytic cleavage, and engages in redox reactions with substrates such as Ph3CCl and PhSSPh. Most notably, 2·Et2O demonstrates distinct selectivity in activating the C─I bond of iodoalkanes. This process proceeds via a kinetically favored or cooperative pathway, leading to alkyl group transfer to the ligand, rather than the thermodynamically preferred σ-bond oxidative addition at the aluminum center. This study highlights how the synergy between an Al(III) center and a non-innocent pincer ligand can unlock unique reaction manifolds, expanding the potential of main-group elements in stoichiometric bond activation.
科研通智能强力驱动
Strongly Powered by AbleSci AI