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A kinetic and theoretical study of the borate catalysed reactions of hydrogen peroxide: the role of dioxaborirane as the catalytic intermediate for a wide range of substrates

机译:硼酸酯催化过氧化氢反应的动力学和理论研究:二氧杂硼硼烷作为多种底物的催化中间体的作用

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摘要

Our recent work has provided new insights into the equilibria and species that exist in aqueous solution at different pHs for the boric acid - hydrogen peroxide system, and the role of these species in oxidation reactions. Most recently, (M. C. Durrant, D. M. Davies and M. E. Deary, Org. Biomol. Chem., 2011, 9, 7249-7254), we have produced strong theoretical and experimental evidence for the existence of a previously unreported monocyclic three membered peroxide species, dioxaborirane, that is the likely catalytic species in borate mediated electrophilic reactions of hydrogen peroxide in alkaline solution. In the present paper, we extend our study of the borate-peroxide system to look at a wide range of substrates that include substituted dimethyl anilines, methyl-p-tolyl sulfoxide, halides, hydrogen sulfide anion, thio-sulfate, thiocyanate, and hydrazine. The unusual selectivity-reactivity pattern of borate catalysed reactions compared with hydrogen peroxide and inorganic or organic peracids previously observed for the organic sulfides (D. M. Davies, M. E. Deary, K. Quill and R. A. Smith, Chem.-Eur. J, 2005,11, 3552-3558) is also seen with substituted dimethyl aniline nucleophiles. This provides evidence that the pattern is not due to any latent electrophilic tendency of the organic sulfides and further supports dioxaborirane being the likely reactive intermediate, thus broadening the applicability of this catalytic system. Moreover, density functional theory calculations on our proposed mechanism involving dioxaborirane are consistent with the experimental results for these substrates. Results obtained at high concentrations of both borate and hydrogen peroxide require the inclusion the diperoxodiborate dianion in the kinetic analysis. A scheme detailing our current understanding of the borate-peroxide system is presented.
机译:我们最近的工作为硼酸-过氧化氢系统在不同pH值的水溶液中存在的平衡和物种以及这些物种在氧化反应中的作用提供了新的见解。最近,(MC Durrant,DM Davies和ME Deary,Org。Biomol。Chem。,2011,9,7249-7254),我们已经为先前未报道的单环三元过氧化物物种的存在提供了有力的理论和实验证据, dioxaborirane,即硼酸盐介导的碱性溶液中过氧化氢的亲电反应中可能的催化物种。在本文中,我们扩展了对硼酸-过氧化物系统的研究,以研究各种底物,包括取代的二甲基苯胺,甲基对甲苯基亚砜,卤化物,硫化氢阴离子,硫代硫酸盐,硫氰酸盐和肼。 。与先前观察到的有机硫化物相比,硼酸盐催化的反应与过氧化氢和无机或有机过酸相比具有不同寻常的选择性-反应模式(DM Davies,ME Deary,K。Quill和RA Smith,Chem.-Eur。J,2005,11, 3552-3558)也可见于取代的二甲基苯胺亲核试剂。这提供了证据,该图案不是由于有机硫化物的任何潜在的亲电趋势,并且进一步支持了二氧杂硼乙烷作为可能的反应性中间体,因此拓宽了该催化体系的适用性。此外,我们提出的涉及二氧杂硼烷的机理的密度泛函理论计算与这些底物的实验结果是一致的。在高浓度的硼酸盐和过氧化氢下获得的结果要求在动力学分析中包括二过二硼酸二阴离子。提出了详细说明我们目前对硼酸过氧化物系统的理解的方案。

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  • 来源
    《Organic & biomolecular chemistry》 |2013年第2期|309-317|共9页
  • 作者单位

    Faculty of Engineering and Environment, Northumbria University, Newcastle upon Tyne NE1 8ST, UK;

    Faculty of Health and Life Sciences, Northumbria University, Newcastle upon Tyne NE1 8ST, UK;

    Faculty of Health and Life Sciences, Northumbria University, Newcastle upon Tyne NE1 8ST, UK;

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