Thioether oxidation with tert-butyl hydroperoxide catalysed by Zr(iv)-substituted polyoxometalates†

IF 3.3 3区 化学 Q2 CHEMISTRY, INORGANIC & NUCLEAR
Olga V. Zalomaeva, Nataliya V. Maksimchuk, Vasilii Yu. Evtushok, Artem A. Antonov, Vadim V. Yanshole and Oxana A. Kholdeeva
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引用次数: 0

Abstract

Zr-substituted polyoxometalates (Zr-POMs) with Lindqvist, Keggin and Wells–Dawson structures, (Bu4N)6[{W5O18Zr(μ-OH)}2] (Zr-L), (Bu4N)8[{PW11O39Zr(μ-OH)}2] (Zr-K) and (Bu4N)11H3[{P2W17O61Zr(μ-OH)}2] (Zr-WD), can activate the environmentally friendly oxidant tert-butyl hydroperoxide (TBHP) and efficiently catalyse the oxidation of various thioethers to produce sulfoxides and sulfones. Ti- and Nb-substituted POMs are significantly less active than Zr-POMs. The activity and selectivity of Zr-POMs strongly depend on their structural type. The reaction rate decreases when moving from Zr-K and Zr-WD to Zr-L. With 1 equiv. of TBHP, the main product of Zr-K is sulfoxide, whereas sulfone predominates with Zr-L. The reaction mechanism was probed using test substrates, and kinetic, isotopic (H218O), and spectroscopic methods. Monomeric alkylperoxo complexes bearing one tert-butyl peroxo moiety per Zr-POM were obtained by the reaction of Zr-K and Zr-L with TBHP and characterized by elemental analysis, HR-ESI-MS, ATR-FT-IR and multinuclear NMR spectroscopy. Both Zr-K and Zr-L alkylperoxo complexes revealed activity toward thioethers under stoichiometric conditions and produced predominantly sulfoxides, pointing to an electrophilic oxygen transfer mechanism. Under turnover conditions, binding of sulfoxide to Zr-L masks the electrophilic character of oxidation and increases the yield of sulfone. The solvent nature strongly affects the oxygen transfer mechanism and oxidation selectivity.

Abstract Image

Zr(IV)取代多金属氧酸盐催化叔丁基过氧化氢氧化硫醚
Lindqvist、Keggin和Wells-Dawson结构的(Bu4N)6[{W5O18Zr(μ-OH)}2] (Zr-L)、(Bu4N)8[{PW11O39Zr(μ-OH)}2] (Zr-K)和(Bu4N)11H3[{P2W17O61Zr(μ-OH)}2] (Zr-WD)的zr - pom (zr - pms)可以激活环境友好型氧化剂叔丁基过氧化氢(TBHP),有效催化各种硫醚氧化生成亚砜和砜。Ti-和nb -取代的POMs活性明显低于Zr-POMs。zr - pom的活性和选择性与它们的结构类型密切相关。从Zr-K和Zr-WD到Zr-L的反应速率降低。Zr-K的主要产物是亚砜,而Zr-L的主要产物是砜。采用测试底物、动力学、同位素(H218O)和光谱等方法探讨了反应机理。通过Zr-K和Zr-L与TBHP反应得到了每个Zr-POM含有一个叔丁基过氧基团的单体烷基过氧配合物,并通过元素分析、HR-ESI-MS、ATR-FT-IR和多核核磁共振波谱对其进行了表征。Zr-K和Zr-L烷基过氧配合物在化学计量条件下都显示出对硫醚的活性,并主要产生亚砜,表明其亲电氧转移机制。在周转条件下,亚砜与Zr-L的结合掩盖了氧化反应的亲电性,提高了砜的收率。溶剂性质对氧转移机理和氧化选择性有很大影响。
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来源期刊
Dalton Transactions
Dalton Transactions 化学-无机化学与核化学
CiteScore
6.60
自引率
7.50%
发文量
1832
审稿时长
1.5 months
期刊介绍: Dalton Transactions is a journal for all areas of inorganic chemistry, which encompasses the organometallic, bioinorganic and materials chemistry of the elements, with applications including synthesis, catalysis, energy conversion/storage, electrical devices and medicine. Dalton Transactions welcomes high-quality, original submissions in all of these areas and more, where the advancement of knowledge in inorganic chemistry is significant.
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