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首页> 外文期刊>The Journal of Organic Chemistry >Formation of 1,10-Phenanthroline-N,N '-dioxide under Mild Conditions: The Kinetics and Mechanism of the Oxidation of 1,10-Phenanthroline by Peroxomonosulfate Ion (Oxone)
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Formation of 1,10-Phenanthroline-N,N '-dioxide under Mild Conditions: The Kinetics and Mechanism of the Oxidation of 1,10-Phenanthroline by Peroxomonosulfate Ion (Oxone)

机译:温和条件下1,10-邻菲咯啉-N,N'-二氧化物的形成:过氧单硫酸盐离子(Oxone)氧化1,10-菲咯啉的动力学和机理

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摘要

This paper confirms the unexpected formation of 1,10-phenanthroline-N,N'-dioxide (phenO(2)) when 1,10-phenanthroline (phen) is oxidized by peroxomonosulfate ion (EMS) in a neutral aqueous solution. The kinetics of oxidation of phen by PMS features a complex pH dependence. In 1.00 M H2SO4, 1,10-phenanthroline-mono-N-oxide (phenO) is the sole product of the reaction. The rate of the N-oxidation is highly dependent on pH with a maximum at pH similar to 6.7. The formation of phenO occurs via two parallel pathways: the rate constant of the oxidation of phen (k = 3.1 +/- 0.1 s(-1)) is significantly larger than that of Hphen(+) [k = (4.1 +/- 0.3) x 10(-3) M-1 s(-1)] because the two N atoms are open to oxidative attack in the deprotonated substrate while an internal hydrogen bond hinders the oxidation of the protonated form. With an excess of PMS, four consecutive oxidation steps were found in nearly neutral solutions. In the early stage of the reaction, the stepwise oxidation results in the formation of phenO, which is converted into phenO(2) in the second step. The formation of phenO(2) was confirmed by H-1 NMR and ESI-MS methods. The results presented here offer the possibility of designing an experimental protocol for preparing phenO(2).
机译:本文证实了1,10-菲咯啉-N,N'-二氧化物(phenO(2))在中性水溶液中被过氧一硫酸根离子(EMS)氧化1,10-菲咯啉(phen)时会意外形成。 PMS氧化苯的动力学动力学具有复杂的pH依赖性。在1.00 M H2SO4中,反应的唯一产物是1,10-菲咯啉单-N-氧化物(phenO)。 N-氧化的速率高度依赖于pH,在类似于6.7的pH下最大。 phenO的形成通过两个平行途径发生:phen的氧化速率常数(k = 3.1 +/- 0.1 s(-1))明显大于Hphen(+)的速率常数[k =(4.1 +/- 0.3)x 10(-3)M-1 s(-1)],因为两个N原子在去质子化的底物中开放以遭受氧化攻击,而内部氢键阻碍了质子化形式的氧化。使用过量的PMS,在几乎中性的溶液中发现了四个连续的氧化步骤。在反应的早期阶段,逐步氧化导致phenO的形成,在第二步中将其转化为phenO(2)。通过H-1 NMR和ESI-MS方法确认了phenO(2)的形成。这里介绍的结果提供了设计用于制备phenO(2)的实验协议的可能性。

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