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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >~1H NMR, electron paramagnetic resonance, and density functional theory study of dinuclear pentaammineruthenium dicyanamidobenzene complexes
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~1H NMR, electron paramagnetic resonance, and density functional theory study of dinuclear pentaammineruthenium dicyanamidobenzene complexes

机译:双核五氨合钌双氰胺基苯配合物的〜1H NMR,电子顺磁共振和密度泛函理论研究

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Paramagnetic ~1H NMR and electron paramagnetic resonance (EPR) spectroscopies and density functional theory (DFT) spin density calculations were selectively performed on the [{(NH _3) _5Ru} _2(μ-L)] ~(3+4+5+) complexes, where L is 2,3,5,6-tetrachloro-, 2,5-dichloro-, 2,5-dimethyl-, and unsubstituted 1,4-dicyanamidobenzene dianion, to characterize the electronic structure of these complexes. EPR spectra of the [{(NH _3) _5Ru} _2(μ-L)] ~(3+) complexes in N,N'-dimethylformamide at 4 K showed a ruthenium axial signal, and thus the complexes are [Ru(II),L ~(2-), Ru(III)] mixed-valence systems. DFT spin density calculations of [{(NH _3) _5Ru} _2(μ-L)] ~(3+) where L = 1,4-dicyanamidobenzene dianion gave mostly bridging-ligand centered spin distribution for both vacuum and implicit solvent calculations, in poor agreement with EPR, but more realistic results were obtained when explicit electrostatic interactions between solute and solvent were included in modeling. For the [{(NH _3) _5Ru} _2(μ-L)] ~(4+) complexes, EPR spectroscopy showed no signal down to 4 K. Nevertheless, solvent-dependent 1H NMR data and analysis support a [Ru(III),L ~(2-), Ru(III)] state. Hyperfine coupling constants (A c/h) of trans- and cis-ammine and phenyl hydrogens were determined to be 17.2, 3.8, and -1.5 MHz respectively. EPR studies of the [{(NH _3) _5Ru} _2(μ-L)] ~(5+) complexes showed a metal-radical axial signal and based on previously published ~1H NMR data, a [Ru(IV),L ~(2-), Ru(III)] state is favored over a [Ru(III),L ~-, Ru(III)] state.
机译:对[{(NH _3)_5Ru} _2(μ-L)]〜(3 + 4 + 5 +)选择性地进行了顺磁性〜1H NMR和电子顺磁共振(EPR)光谱学和密度泛函理论(DFT)自旋密度计算。 )(其中L是2,3,5,6-四氯-,2,5-二氯-,2,5-二甲基-和未取代的1,4-二氰基氨基苯二酸)的配合物,以表征这些配合物的电子结构。 N,N'-二甲基甲酰胺中[{(NH _3)_5Ru} _2(μ-L)]〜(3+)配合物的EPR谱显示钌轴向信号,因此配合物为[Ru(II ),L〜(2-),Ru(III)]混合价系统。 [{((NH _3)_5Ru} _2(μ-L)]〜(3+)的DFT自旋密度计算,其中L = 1,4-二氰胺基苯二阴离子,在真空和隐式溶剂计算中,大多以桥接配体为中心的自旋分布,与EPR的一致性差,但是当溶质和溶剂之间明确的静电相互作用包括在建模中时,可以获得更现实的结果。对于[{(NH _3)_5Ru} _2(μ-L)]〜(4+)络合物,EPR光谱显示低至4 K均无信号。尽管如此,溶剂依赖性1H NMR数据和分析支持[Ru(III ),L〜(2-),Ru(III)]状态。反式和顺式氨和苯基氢的超精细偶合常数(A c / h)分别确定为17.2、3.8和-1.5 MHz。对[{(NH _3)_5Ru} _2(μ-L)]〜(5+)配合物的EPR研究显示出金属自由基轴向信号,根据先前发表的〜1H NMR数据,[Ru(IV),L 〜(2-),Ru(III)]状态优于[Ru(III),L〜-,Ru(III)]状态。

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