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二硼杂环丁烷:一种高活性过氧化物,是硼酸盐催化碱性水溶液中过氧氢的亲电反应中可能的中间体。

Dioxaborirane: a highly reactive peroxide that is the likely intermediate in borate catalysed electrophilic reactions of hydrogen peroxide in alkaline aqueous solution.

机构信息

School of Life Sciences, Northumbria University, Newcastle upon Tyne, NE1 8ST, UK.

出版信息

Org Biomol Chem. 2011 Oct 21;9(20):7249-54. doi: 10.1039/c1ob06142a. Epub 2011 Sep 1.

Abstract

This paper reports on a kinetic and theoretical study into the borate mediated reaction of dimethyl sulfide with hydrogen peroxide in both acid and alkaline conditions. At high pH, whilst the kinetic data is consistent with the catalytic species being monoperoxoborate, formed from the rapid equilibrium between hydrogen peroxide and boric acid, DFT calculations show that this species is in fact less reactive than hydrogen peroxide, requiring us to seek an alternative catalytic mechanism. DFT provides an important insight for this, showing that although boric acid and peroxoboric acid are primarily Lewis acids, they can exhibit a small degree of Brønsted acidity, allowing, respectively, the B(O)(OH)(2)(-) and HOOB(OH)(O)(-) anions to exist in small concentrations. Whilst the peroxoborate anion, HOOB(OH)(O)(-), is predicted to have only marginal catalytic activity, its tautomer, dioxaborirane, (HO)(2)BO(2)(-), a three membered cyclic peroxide, has a very low activation barrier of 2.8 kcal/mol. Hence, even though dioxaborirane is likely to be present in very low concentrations, it is still sufficiently reactive for overall rate enhancements to be observed for this system. This is the first literature report of this species. The observed low selectivity observed for borate catalysed reactions of hydrogen peroxide with a range of substituted phenyl methyl sulfides in our previous study (D. M. Davies, M. E. Deary, K. Quill and R. A. Smith, Chem.-Eur. J. 2005, 11, 3552-3558) is further evidence in favour of a highly reactive catalytic species. At low pH, kinetic data shows that borate catalyses the reaction between hydrogen peroxide and dimethyl sulfide; this is supported by DFT calculations that predict peroxoboric acid to be an effective catalytic intermediate, with an energy barrier of 7.4 kcal mol(-1) compared to 10.1 kcal mol(-1) for the uncatalysed system. Nevertheless, the overall contribution of this pathway is small because of the unfavourable equilibrium between hydrogen peroxide and boric acid to form peroxoboric acid.

摘要

本文报道了在酸性和碱性条件下,二甲硫醚与过氧化氢在硼酸介导下的动力学和理论研究。在高 pH 值下,虽然动力学数据表明催化物种是由过氧化氢和硼酸快速平衡形成的单过氧硼酸,但 DFT 计算表明,该物种的反应活性实际上低于过氧化氢,这要求我们寻求替代的催化机制。DFT 为此提供了一个重要的见解,表明尽管硼酸和过氧硼酸主要是路易斯酸,但它们可以表现出一定程度的布朗斯台德酸度,分别允许 B(O)(OH)(2)(-)和 HOOB(OH)(O)(-)阴离子以低浓度存在。虽然过氧硼酸根阴离子 HOOB(OH)(O)(-) 预测只有轻微的催化活性,但它的互变异构体二氧硼环丙烷 (HO)(2)BO(2)(-),一种三员环状过氧化物,具有非常低的 2.8 kcal/mol 的活化能垒。因此,尽管二氧硼环丙烷可能以非常低的浓度存在,但它仍然具有足够的反应性,使得该体系的整体速率增强得以观察到。这是该物种的首次文献报道。在我们之前的研究中,观察到硼酸催化过氧化氢与一系列取代的苯基甲基硫醚反应的低选择性(D. M. Davies、M. E. Deary、K. Quill 和 R. A. Smith,Chem.-Eur. J. 2005, 11, 3552-3558),这进一步证明了高度反应性的催化物种的存在。在低 pH 值下,动力学数据表明硼酸催化过氧化氢与二甲硫醚之间的反应;这得到了 DFT 计算的支持,该计算预测过氧硼酸是一种有效的催化中间体,其能量垒为 7.4 kcal mol(-1),而未催化体系的能量垒为 10.1 kcal mol(-1)。然而,由于过氧化氢和硼酸之间形成过氧硼酸的平衡不利,该途径的总贡献很小。

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