首页> 外文期刊>Inorganic Chemistry Communications >Synthesis, molecular structure and supramolecular chemistry of a new nickel-quinoxaline dithiolate system [Bu4N]2[Ni(6,7-qdt)2](6,7-qdt = quinoxaline-6,7-dithiolate) and comparison of its electronic and electrochemical properties with those of [Bu4N]2[Ni(qdt)2](qdt = quinoxaline-2,3-dithiolate)
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Synthesis, molecular structure and supramolecular chemistry of a new nickel-quinoxaline dithiolate system [Bu4N]2[Ni(6,7-qdt)2](6,7-qdt = quinoxaline-6,7-dithiolate) and comparison of its electronic and electrochemical properties with those of [Bu4N]2[Ni(qdt)2](qdt = quinoxaline-2,3-dithiolate)

机译:新型镍-喹喔啉二硫代磺酸盐体系[Bu4N] 2 [Ni(6,7-qdt)2](6,7-qdt =喹喔啉-6,7-二硫代盐)的合成,分子结构和超分子化学性质及其电子学比较和[Bu4N] 2 [Ni(qdt)2](qdt =喹喔啉-2,3-二硫代盐)的电化学性质

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摘要

The new nickel bis(dithiolene) complex [Bu4N]2[Ni(6,7-qdt)2] (1) (6,7-qdt = quinoxaline-6,7-dithiolate) has been synthesized, starting from quinoxaline-6,7-dithiol, nickel chloride and tetrabutylammonium bromide in methanol. Compound 1 crystallizes in P2_1/c space group (monoclinic system). Its crystal structure has been characterized by interesting C-H…S and C-H…N weak interactions resulting in a three dimensional supramolecular network. Complex 1 shows solvent sensitive absorption band (broad feature) in the visible region, which is attributed to charge transfer (CT) transition involving electronic excitation from a HOMO that is a mixture of dithiolate (π) and metal (d) orbital character to a LUMO which is a π orbital of the dithiolate. This CT transition absorbs at low energy region in comparison to the CT band of the [Bu4N]2[Ni(qdt)2] in the visible region. Interestingly, compound 1 undergoes reversible oxidation at very low oxidation potential (E_(1/2) = + 0.12 V vs Ag/AgCl) compared to that of [Ni(qdt)2]~(2-) (E_(1/2) = + 0.41 V vs Ag/AgCl) in MeOH solutions.
机译:从喹喔啉-6开始合成了新的镍双(二硫代噻吩)镍配合物[Bu4N] 2 [Ni(6,7-qdt)2](1)(6,7-qdt =喹喔啉-6,7-二硫代硫酸盐)。甲醇中的7,7-二硫醇,氯化镍和四丁基溴化铵。化合物1在P2_1 / c空间群(单斜晶系)中结晶。其晶体结构以有趣的C-H…S和C-H…N弱相互作用为特征,形成了三维超分子网络。配合物1在可见光区显示出溶剂敏感吸收带(宽特征),这归因于电荷转移(CT)跃迁,涉及从HOMO的电子激发,该HOMO是二硫醇盐(π)和金属(d)轨道特征的混合物,直至LUMO是二硫醇盐的π轨道。与可见区域中的[Bu4N] 2 [Ni(qdt)2]的CT谱带相比,此CT跃迁在低能区吸收。有趣的是,与[Ni(qdt)2]〜(2-)相比,化合物1在非常低的氧化电势下(E_(1/2)= + 0.12 V vs Ag / AgCl)经历可逆氧化。 )= + 0.41 V相对于MeOH / AgCl的MeOH溶液。

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