首页> 外文期刊>Inorganica Chimica Acta >A comparative study of the speciation in methanol solution and activity in the oxidative coupling of 2,6-di-tert-butylphenol presented by the complexes: Copper(II)-N,N'-di-tert-butylethylenediamine-halogen and some copper(II)-diamine-halogen complexes
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A comparative study of the speciation in methanol solution and activity in the oxidative coupling of 2,6-di-tert-butylphenol presented by the complexes: Copper(II)-N,N'-di-tert-butylethylenediamine-halogen and some copper(II)-diamine-halogen complexes

机译:铜(II)-N,N'-二叔丁基乙二胺-卤素与某些铜的配合物对甲醇溶液中形态和2,6-二叔丁基苯酚氧化偶联活性的比较研究(II)-二胺-卤素配合物

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The oxidative coupling of 2,6-di-methylphenol is an industrial reaction catalyzed by the copper(II)-ditert-butylethylenediamine-dibromo complex. In order to get more insight about the behavior of the N,N0-dialkyl-diamine cupric complexes and the halide effect on the catalyic activity, a spectrophotometric study of the speciation in methanol of copper(II) coordinated with N,N'-di-tert-butylethylenediamine or 1,5-pentanediamine and their respective halides chloride and bromide, was carried out at 303 K. Formation constants and individual calculated electronic spectra of all species, were obtained. With the purpose to compare the catalytic activity of these complexes with other diamine complex systems in the oxidative coupling of 2,6-di-methylphenol, the oxidative coupling of 2,6-di-tert-butylphenol was used as a catalytic model system. Solutions with the most abundant complexes were tested and correlated to their catalytic activity. These data are compared with several studies of the copper(II) diamine complexes, with or without chloride or bromide ions. The catalytic activity in the oxidation of 2,6-di-tert-butylphenol was monitored in methanol solution, following the corresponding quinone formation, at 418 nm (ε = 3.95x10~4 L mol~(-1) -cm~(-1) at 303 K). The obtained formation constants of the copper(II)-di-tert-butylethylenediamine system are: logβ_(110) = 4.13 ± 0.12, logβ_(120) = 6.56 ± 0.12. For the ternary copper(II)-di-tert-butylethylenediamine chloro or bromo systems are: logβ_(111) = 6.10 ± 0.09 and logβ_(111) = 6.69 ± 0.04, respectively. While of the copper(II)-1,5-pentanediamine system are logβ_(110) = 3.32 ± 0.11, logβ_(210) = 5.73 ± 0.10. Kinetic studies of the oxidative coupling of 2,6-di-tert-butylphenol catalyzed by the copper(II)-diamine systems indicate that the copper(II)-1,5-pentanediamine presents low activity, while the copper(II)-N, N0-di-tert-butylethylenediamine shows a very similar activity to the copper(II)-1,4-butanediamine system reported earlier. Further studies are needed in order to explain the reasons why the complexes generated with this two different diamines display such similar activity.
机译:2,6-二甲基苯酚的氧化偶合是由铜(II)-二叔丁基乙二胺-二溴络合物催化的工业反应。为了更深入地了解N,N0-二烷基-二胺铜配合物的行为以及卤化物对催化活性的影响,采用分光光度法研究了N,N'-di与铜(II)的甲醇形态-叔丁基乙二胺或1,5-戊二胺及其各自的卤化物氯化物和溴化物在303 K下进行。获得了所有物种的形成常数和单独计算的电子光谱。为了比较这些络合物与其他二胺络合物体系在2,6-二甲基苯酚的氧化偶联中的催化活性,将2,6-二叔丁基苯酚的氧化偶联用作催化模型体系。测试了具有最丰富络合物的溶液,并将其与其催化活性相关联。将这些数据与对含或不含氯离子或溴离子的铜(II)二胺配合物的多项研究进行了比较。相应的醌形成后,在甲醇溶液中在418 nm(ε= 3.95x10〜4 L mol〜(-1)-cm〜(-)的条件下监测甲醇溶液中2,6-二叔丁基苯酚的氧化催化活性。 1)在303 K)。得到的铜(II)-二叔丁基乙二胺体系的形成常数为:logβ_(110)= 4.13±0.12,logβ_(120)= 6.56±0.12。对于三元铜(II)-二叔丁基乙二胺的氯或溴系统分别为:logβ_(111)= 6.10±0.09和logβ_(111)= 6.69±0.04。在铜(II)-1,5-戊二胺体系中,logβ_(110)= 3.32±0.11,logβ_(210)= 5.73±0.10。铜(II)-二胺体系催化的2,6-二叔丁基苯酚氧化偶联的动力学研究表明,铜(II)-1,5-戊二胺的活性较低,而铜(II)- N,N0-二叔丁基乙二胺的活性与先前报道的铜(II)-1,4-丁二胺体系非常相似。为了解释为什么用这两种不同的二胺生成的复合物显示出如此相似的活性的原因,需要进行进一步的研究。

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