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首页> 外文期刊>Catalysis Today >Oxidative desulfurization of benzothiophene derivatives with cis-dioxomolybdenum(VI) catalyst precursors, under extractive conditions
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Oxidative desulfurization of benzothiophene derivatives with cis-dioxomolybdenum(VI) catalyst precursors, under extractive conditions

机译:在萃取条件下,苯并噻吩钼(VI)催化剂前体具有苯并噻吩衍生物的氧化脱硫

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The study of the activity of a series of heterogeneous cis-dioxomolybdenum(VI) based catalyst precursors for the hydrogen peroxide promoted oxidation of benzothiophene, 2- and 3-methylbenzothiophene, dibenzothiophene and 4,6-dimethyldibenzothiophene, has been carried out. The last, chosen as model substrates of the common sulfurated derivatives of fuels, have been oxidized in the presence of selected imidazolium based ionic liquids, under extractive oxidative desulfurization conditions. The reactivity of sulfur-containing compounds toward the oxidation to their corresponding sulfones has been evaluated, firstly, for each type of substrate alone, and then applying the optimized procedure to a system formed by all sulfurated substrates. Our aim was to mimic the oxidation of a model diesel oil, under either thermal or microwave assisted heating. Cis-dioxomolybdenum (VI) compounds behaved as very active and stable catalytic systems retaining, in one selected case, the original activity at least for three cycles. Imidazolium ionic liquids played a dual fundamental role not only as extractant and reaction medium but also as stabilizing system for both the oxidant and the catalytic agents. Under optimized microwave-assisted conditions, the quantitative elimination of sulfurated substrates from the model diesel oil, was obtained after only 1 h or 2 h, when [BMIM]OTf or [BMIM]BF4 and [OMIM]BF4, respectively, have been used as ionic liquids.
机译:研究了一系列非均相顺式二氧钼(VI)基催化剂前体对过氧化氢促进氧化苯并噻吩、2-和3-甲基苯并噻吩、二苯并噻吩和4,6-二甲基二苯并噻吩的活性。最后一种被选为常见燃料硫化衍生物的模型基质,在所选咪唑基离子液体存在下,在萃取氧化脱硫条件下被氧化。首先,针对每种类型的底物,评估了含硫化合物氧化为相应砜的反应性,然后将优化程序应用于由所有硫化底物形成的系统。我们的目的是模拟在热加热或微波辅助加热下模型柴油的氧化。顺式二氧钼(VI)化合物表现为非常活跃和稳定的催化系统,在一个选定的案例中,至少在三个循环中保持原始活性。咪唑类离子液体不仅作为萃取剂和反应介质,而且作为氧化剂和催化剂的稳定体系,发挥着双重基本作用。在优化的微波辅助条件下,当[BMIM]OTf或[BMIM]BF4和[OMIM]BF4分别用作离子液体时,仅在1小时或2小时后即可从模型柴油中定量消除硫化底物。

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