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首页> 外文期刊>Russian journal of electrochemistry >Study of the mechanism of redox transformations of sterically hindered N-aryl-o-iminoquinones
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Study of the mechanism of redox transformations of sterically hindered N-aryl-o-iminoquinones

机译:位阻N-芳基-o-亚氨基醌的氧化还原转化机理的研究

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摘要

The mechanisms of redox transformations of sterically hindered [(1)IBQ]-[(3)IBQ], 9,10-iminophenanthraquinone [(4)IFQ], and o-aminophenol [(5)AP] have been studied by cyclic voltammetry. It has been shown that the reduction process in tetrahydrofuran consists of two consecutive reversible steps leading to the formation of a radical anion and a dianion. In the case of acetonitrile, only the first redox process is detected, which involves the steps of protonation and electron addition resulting in the formation of a monoanion. Quantum-chemical calculations indicate a lower degree of participation of the six-membered nonaromatic carbon ring in the spin density delocalization in the o-iminosemiquinonate radical anions as compared to o-benzosemiquinonate radical anions. The oxidation of iminoquinones results in the formation of an unstable radical cation, which undergoes further chemical transformations. An increase in the acidity of a medium leads to the formation of protonated forms with the reduction potential being shifted anodically. The introduction of screening groups makes it possible to suppress side reactions of hydrolysis and cyclization of oxidized o-aminophenol [(5)AP] forms. Therefore, the major product of complete electrolysis is o-iminobenzoquinone [(2)IBQ].
机译:通过循环伏安法研究了位阻[(1)IBQ]-[(3)IBQ],9,10-亚氨基菲蒽醌[(4)IFQ]和邻氨基苯酚[(5)AP]的氧化还原转化机理。 。已经表明,四氢呋喃中的还原过程由两个连续的可逆步骤组成,从而导致自由基阴离子和二阴离子的形成。在乙腈的情况下,仅检测到第一个氧化还原过程,该过程涉及质子化和电子加成步骤,导致形成单阴离子。量子化学计算表明,与邻-苯并半醌磺酸根自由基阴离子相比,六元非芳族碳环参与邻亚氨基-半醌磺酸根阴离子的自旋密度离域的程度更低。亚氨基醌的氧化导致形成不稳定的自由基阳离子,该阳离子经历进一步的化学转化。介质酸度的增加导致质子化形式的形成,其还原电位在阳极上移动。引入筛选基团使得可以抑制氧化的邻氨基苯酚[(5)AP]形式的水解和环化副反应。因此,完全电解的主要产物是邻亚氨基苯醌[(2)IBQ]。

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