化学
铌
质子化
反应性(心理学)
药物化学
氯化锂
键裂
复分解
氯化物
盐变质反应
高分子化学
立体化学
有机化学
催化作用
聚合
病理
离子
医学
替代医学
聚合物
作者
Simon de Graaff,Marcel Eilers,Julia Buschermöhle,Nina Bengen,Anna Dierks,Marc Schmidtmann,Manfred Manßen,Rüdiger Beckhaus
标识
DOI:10.1002/ejic.202200637
摘要
Abstract Bis( η 5 : η 1 ‐(di‐ para ‐tolyl)pentafulvene)niobium chloride ( 1 ) reacts with methyl lithium via salt metathesis to the methylated bis(pentafulvene)niobium complex 2 , and with lithium 2,6‐diisopropylanilide addition and subsequent N−H bond activation to the imido mono(pentafulvene)niobium complex 3 . Avoiding the competing protonation of the chloride, bis(pentafulvene)niobium complex 2 reacts with primary aromatic and aliphatic amines to form terminal niobocene imido complexes, and with water to form the analog terminal oxo complex. Secondary methyl amines undergo a simultaneous N−H and C−H activation to form niobaaziridines under mild conditions. In contrast to other reported examples, 3 can be employed to investigate the uncontested reactivity of mono(pentafulvene)niobium complexes. Reaction with 4‐ tert ‐butylphenol selectively yields a niobocene phenolate complex. Unprecedented for mono(pentafulvene)niobium complexes, treating 3 with multiple‐bond‐containing substrates (nitriles, isocyanates) smoothly results the insertion into the Nb‐C exo σ‐bond, forming the corresponding alkylidene amido and imidato complexes.
科研通智能强力驱动
Strongly Powered by AbleSci AI