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带有 N,N'-双(氟芳基)和 N,N'-双(全氟芳基)取代基的阴离子 N-杂环卡宾。

Anionic N-heterocyclic carbenes with N,N'-bis(fluoroaryl) and N,N'-bis(perfluoroaryl) substituents.

机构信息

Department of Chemistry, University of Calgary, 2500 University Dr. NW, Calgary, Alberta, T2N 1N4, Canada.

出版信息

Chemistry. 2010 Dec 27;16(48):14520-33. doi: 10.1002/chem.201001698.

Abstract

A series of rhodium complexes, [Rh(cod)(NHC-F(x))(OH(2))] (cod = 1,5-cyclooctadiene; NHC = N-heterocyclic carbene), incorporating anionic N-heterocyclic carbenes with 2-tert-butylmalonyl backbones and 2,6-dimethylphenyl (x = 0), 2,6-difluorophenyl (x = 4), 2,4,6-trifluorophenyl (x = 6), and pentafluorophenyl (x = 10) N,N'-substituents, respectively, has been prepared by deprotonation of the corresponding zwitterionic precursors with potassium hexamethyldisilazide, followed by immediate reaction of the resulting potassium salts with [{RhCl(cod)}(2)]. These complexes could be converted to the related carbonyl derivatives [Rh(CO)(2)(NHC-F(x))(OH(2))] by displacement of the COD ligand with CO. IR and NMR spectroscopy demonstrated that the degree of fluorination of the N-aryl substituents has a considerable influence on the σ-donating and π-accepting properties of the carbene ligands and could be effectively used to tune the electronic properties of the metal center. The carbonyl groups on the carbene ligand backbone provided a particularly sensitive probe for the assessment of the metal-to-ligand π donation. The ortho-fluorine substituents on the N-aryl groups in the carbene ligands interacted with the other ligands on rhodium, determining the conformation of the complexes and creating a pocket suitable for the coordination of water to the metal center. Computational studies were used to explain the influence of the fluorinated N-substituents on the electronic properties of the ligand and evaluate the relative contribution of the σ- and π-interactions to the ligand-metal interaction.

摘要

一系列铑配合物,[Rh(cod)(NHC-F(x))(OH(2))](cod = 1,5-环辛二烯;NHC = 氮杂环卡宾),分别包含带有 2-叔丁基丙二酰基骨架和 2,6-二甲基苯基(x = 0)、2,6-二氟苯基(x = 4)、2,4,6-三氟苯基(x = 6)和五氟苯基(x = 10)N,N'-取代基的阴离子 N-杂环卡宾,通过用六甲基二硅氮钾对相应的两性离子前体进行去质子化来制备,然后立即使所得的钾盐与[{RhCl(cod)}(2)]反应。这些配合物可以通过用 CO 取代 COD 配体转化为相关的羰基衍生物[Rh(CO)(2)(NHC-F(x))(OH(2))]。IR 和 NMR 光谱表明,N-芳基取代基的氟化程度对卡宾配体的σ-给电子和π-接受性质有相当大的影响,可以有效地用于调节金属中心的电子性质。卡宾配体骨架上的羰基基团为评估金属到配体的π供体提供了一个特别敏感的探针。卡宾配体中 N-芳基上的邻氟取代基与铑上的其他配体相互作用,决定了配合物的构象,并为配位水到金属中心创造了一个合适的口袋。计算研究用于解释氟化的 N-取代基对配体电子性质的影响,并评估σ-和π-相互作用对配体-金属相互作用的相对贡献。

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