以简单乙酸酯配位体为支撑的全氟烷基镍络合物

IF 2.9 3区 化学 Q2 CHEMISTRY, INORGANIC & NUCLEAR
Cherry Mae T. Ravidas, Scott T. Shreiber, Lukas Kletsch, Axel Klein* and David A. Vicic*, 
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引用次数: 0

摘要

我们通过 19F NMR 光谱探讨了四甲基醋酸铵与 [(MeCN)2Ni(CF3)2]、[(MeCN)2Ni(C2F5)2] 和 [NMe4][(MeCN)Ni(CF3)3] 的相互作用。我们发现,根据镍络合物的性质,一个或两个醋酸盐配体可以添加到金属中心并取代与镍结合的 MeCN 配体,具体取决于醋酸盐的浓度。可以与镍结合的醋酸盐的数量,以及由此产生的复合物是以单体还是二聚体的形式存在,都取决于氟烷基配体的性质。此外,我们还观察到,[(MeCN)2Ni(CF3)2] 的镍中心在两个等量的醋酸盐存在下发生氧化,会生成八面体、顺磁性(EPR 光谱)和阴离子 Ni(III) 复合物 [NMe4][Ni(CF3)2(OAc)2]。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Nickel Perfluoroalkyl Complexes Supported by Simple Acetate Coligands

Nickel Perfluoroalkyl Complexes Supported by Simple Acetate Coligands

Nickel Perfluoroalkyl Complexes Supported by Simple Acetate Coligands

The interaction of tetramethylammonium acetate with [(MeCN)2Ni(CF3)2], [(MeCN)2Ni(C2F5)2], and [NMe4][(MeCN)Ni(CF3)3] was explored by 19F NMR spectroscopy. We show that depending on the nature of the nickel complex, one or two acetate ligands can add to the metal center and replace the nickel-bound MeCN ligands, depending on the acetate concentration. The number of acetates that could bind to nickel, and whether the resulting complex exists as a monomer or dimer, was determined to be dependent on the nature of the fluoroalkyl ligand. Moreover, we observe that oxidation of the nickel center of [(MeCN)2Ni(CF3)2] in the presence of two equivalents of acetate leads cleanly to the octahedral, paramagnetic (EPR spectroscopy), and anionic Ni(III) complex [NMe4][Ni(CF3)2(OAc)2].

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来源期刊
Organometallics
Organometallics 化学-无机化学与核化学
CiteScore
5.60
自引率
7.10%
发文量
382
审稿时长
1.7 months
期刊介绍: Organometallics is the flagship journal of organometallic chemistry and records progress in one of the most active fields of science, bridging organic and inorganic chemistry. The journal publishes Articles, Communications, Reviews, and Tutorials (instructional overviews) that depict research on the synthesis, structure, bonding, chemical reactivity, and reaction mechanisms for a variety of applications, including catalyst design and catalytic processes; main-group, transition-metal, and lanthanide and actinide metal chemistry; synthetic aspects of polymer science and materials science; and bioorganometallic chemistry.
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