化学
镍
磷化氢
齿合度
催化作用
氢化物
芳基
氯化物
配体(生物化学)
产量(工程)
组合化学
配位复合体
环辛二烯
烷基
晶体结构
金属
有机化学
受体
冶金
材料科学
生物化学
作者
Patrick Müller,Patrick Finkelstein,Nils Trapp,Alessandro Bismuto,Gunnar Jeschke,Bill Morandi
出处
期刊:Inorganic Chemistry
[American Chemical Society]
日期:2023-10-02
卷期号:62 (41): 16661-16668
被引量:1
标识
DOI:10.1021/acs.inorgchem.3c01559
摘要
Phosphine-stabilized monovalent nickel complexes play an important role in catalysis, either as catalytically active species or as decomposition products. Most routes to access these complexes are highly ligand specific or rely on strong reducing agents. Our group recently disclosed a path to access nickel(I)–phenolate complexes from bis(1,5-cyclooctadiene)nickel(0) (Ni(cod)2). Herein, we demonstrate this protocol's broad applicability by ligating a wide range of mono- and bidentate phosphine ligands. We further show the versatility of the phenolate fragment as a precursor to nickel(I)–alkyl or aryl species, which are relevant to Ni catalysis or synthetically useful nickel(I)–chloride and hydride complexes. We also demonstrate that the chloride complex can be synthesized in a one-pot procedure starting from Ni(cod)2 in good yield, making this protocol a valuable alternative to current procedures. Single-crystal X-ray diffraction, IR, and EPR (or NMR) spectroscopy were employed to characterize all of the synthesized nickel complexes.
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