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首页> 外文期刊>Chemistry: A European journal >Quinobis(imidazolylidene): Synthesis and Study of an Electron-Configurable Bis(N-Heterocyclic Carbene) and Its Bimetallic Complexes
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Quinobis(imidazolylidene): Synthesis and Study of an Electron-Configurable Bis(N-Heterocyclic Carbene) and Its Bimetallic Complexes

机译:喹啉二(咪唑基亚烷基):电子可配置的双(N-杂环碳)及其双金属配合物的合成与研究

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摘要

Reaction of bromanil with N,N’-dimesitylformamidine followed by deprotonation with NaNACHTUNGTRENUNG(SiMe3)2 afforded 1,1’,3,3’-tetramesitylquinobis-ACHTUNGTRENUNG(imidazolylidene) (1), a bis(N-heterocyclic carbene) (NHC) with two NHC moieties connected by a redox active p-quinone residue, in 72% yield of isolated compound. Bimetallic complexes of 1 were prepared by coupling to FcN3 (2) or FcNCS (3; Fc=ferrocenyl) or coordination to [MACHTUNGTRENUNG(cod)Cl] (4a or 4b, where M=Rh or Ir, respectively;cod=1,5-cyclooctadiene). Treatment of 4a and 4b with excess CO(g) afforded the corresponding [M(CO)2Cl] complexes 5a and 5b, respectively. Analysis of 2–5 by NMR spectroscopy and X-ray diffraction indicated that the electron-deficient quinone did not significantly affect the inherent spectral properties or coordination chemistry of the flanking imidazolylidene units, as compared to analogous NHCs. Infrared spectroscopy and cyclic voltammetry revealed that decreasing the electron density at MLn afforded an increase in the stretching energy and a decrease in the reduction potential of the quinone,indicative of metal–quinone electronic interaction. Differential pulse voltammetry and chronoamperometry of the metal-centered oxidations in 2–4 revealed two single, one-electron peaks.Thus, the metal atoms bound to 1 are oxidized at indistinguishable potentials and do not appear electronically coupled.However, the metal–quinone interaction was used to increase the electron density at coordinated metal atoms. Infrared spectroelectrochemistry revealed that the average nCO values for 5a and 5b decreased by 14 and 15 cm1, respectively, upon reduction of the quinone embedded within 1. These shifts correspond to 10 and 12 cm1 decreases in the Tolman electronic parameter of this ditopic ligand.
机译:溴与N,N'-二甲基间甲form的反应,然后用NaNACHTUNGTRENUNG(SiMe3)2脱质子化反应,得到1,1',3,3'-四甲苯基喹啉双-ACHTUNGTRENUNG(咪唑基亚烷基)(1),一种双(N-杂环卡宾)(NHC ),其中两个NHC部分通过氧化还原活性对苯醌残基连接,分离出的化合物收率为72%。通过与FcN3(2)或FcNCS(3; Fc =二茂铁基)偶联或与[MACHTUNGTRENUNG(cod)Cl]配位(4a或4b,其中M = Rh或Ir; cod = 1, 5-环辛二烯)。用过量的CO(g)处理4a和4b分别得到相应的[M(CO)2 Cl]络合物5a和5b。通过NMR光谱和X射线衍射分析2–5表明,与类似的NHCs相比,缺电子醌对侧翼咪唑基亚烷基单元的固有光谱性质或配位化学没有显着影响。红外光谱和循环伏安法表明,降低MLn处的电子密度可增加拉伸能,并降低醌的还原电势,表明金属-醌电子相互作用。差分脉冲伏安法和计时安培法在2–4处以金属为中心的氧化反应中发现了两个单峰,一个电子峰。因此,与1结合的金属原子在不可区分的电势下被氧化,并且没有电子耦合。但是,金属–醌相互作用用于增加配位金属原子上的电子密度。红外光谱电化学显示,当嵌入在1中的醌还原时,5a和5b的平均nCO值分别降低14和15 cm1。这些偏移量对应于该对位配体的Tolman电子参数降低10和12 cm1。

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