首页> 外文期刊>Journal of the American Chemical Society >THE MANGANESE-CONTAINING POLYOXOMETALATE, [WZNMN2II(ZNW9O34)(2)](12-), AS A REMARKABLY EFFECTIVE CATALYST FOR HYDROGEN PEROXIDE MEDIATED OXIDATIONS
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THE MANGANESE-CONTAINING POLYOXOMETALATE, [WZNMN2II(ZNW9O34)(2)](12-), AS A REMARKABLY EFFECTIVE CATALYST FOR HYDROGEN PEROXIDE MEDIATED OXIDATIONS

机译:含锰的聚氧化甲酯,[WZNMN2II(ZNW9O34)(2)](12-),作为过氧化氢介导的氧化的高效催化剂

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The disubstituted manganese polyoxometalate, [WZnMn2(ZnW9O34)(2)](12-), has been used as a catalyst for the epoxidation of alkenes and the oxidation of secondary alcohols to ketones in biphasic (water-organic) reaction media using hydrogen peroxide (30% aqueous H2O2) as the oxygen donor. At subambient temperatures, epoxidations are highly selective with little dismutation of hydrogen peroxide by homolysis or formation of side products by allylic oxidation. Thus, cyclohexene was oxidized to cyclohexene oxide at 2 degrees C with 99% selectivity. At low catalyst loadings and depending on the substrate and reaction temperature, hundreds to thousands of catalytic turnovers were obtained with only a 2-fold excess of hydrogen peroxide over substrate. Kinetic measurements on a model epoxidation of cyclooctene showed that the reaction is first order in cyclooctene, hydrogen peroxide, and [WZnMn2II(ZnW9O34)(2)](12-) catalyst. Magnetic susceptibility measurements along with ESR and atomic absorption spectroscopy reveal that the manganese atom is in a terminal position coordinated by five bridging oxygen atoms and one labile aquo ligand which is disassociated upon transfer of the polyoxometalate anion into an organic phase. Comparison of the [WZnMn2II(ZnW9O34)(2)](12-) anion with other mono-, tri-, or tetrasubstituted manganese polyoxometalates or catalysts having no manganese atoms showed that the catalytic activity of the former was unique. Kinetic evidence exhibited the absence of an induction period for catalyst activation or catalyst deactivation over a period of 12500 turnovers. IR spectra demonstrated that the original catalyst reacted with hydrogen peroxide to form a peroxo intermediate with a typical absorbance at 818 cm(-1). After completion of the reaction, the original IR spectrum was measured again. ESR and atomic aborption spectroscopy also revealed that the [WZnMn2II(ZnW9O34)(2)](12-) anion is solvolytically stable to aqueous hydrogen peroxide. Cyclic voltammetry, IR and W-vis, and a comparative reaction with iodosobenzene as the oxygen donor seem to exclude a high valent manganese-oxo compound as the reactive intermediate. Rather, high reactivity is probably due to a tungsten-peroxo intermediate somehow uniquely activated by an adjacent manganese atom. [References: 58]
机译:双取代的多金属氧酸锰[WZnMn2(ZnW9O34)(2)](12-)已用作双环(水-有机)反应介质中使用过氧化氢的烯烃环氧化和仲醇氧化为酮的催化剂(30%的H2O2水溶液)作为氧气供体。在低于室温的温度下,环氧化具有很高的选择性,过氧化氢几乎不会因均相溶解或通过烯丙基氧化形成副产物而发生歧化。因此,在2℃下以99%的选择性将环己烯氧化为环己烯氧化物。在低的催化剂负载量下,并取决于底物和反应温度,仅底物过量2倍的过氧化氢就可获得数百至数千的催化转换。对环辛烯进行模型环氧化的动力学测量表明,该反应在环辛烯,过氧化氢和[WZnMn2II(ZnW9O34)(2)](12-)催化剂中为一级反应。磁化率测量以及ESR和原子吸收光谱分析表明,锰原子处于末端位置,该末端原子由五个桥连的氧原子和一个不稳定的aquo配体配位,该配位基在多金属氧酸盐阴离子转移到有机相中时解离。 [WZnMn2II(ZnW9O34)(2)](12-)阴离子与其他单,三或四取代的锰多金属氧酸盐或不含锰原子的催化剂的比较表明,前者的催化活性是独特的。动力学证据显示在12500周转的时间内没有催化剂活化或催化剂失活的诱导期。红外光谱表明,原始催化剂与过氧化氢反应形成过氧中间体,在818 cm(-1)处具有典型的吸收率。反应完成后,再次测量原始的IR光谱。 ESR和原子吸收光谱法还显示[WZnMn2II(ZnW9O34)(2)](12-)阴离子对过氧化氢水溶液具有溶剂分解稳定性。循环伏安法,IR和W-vis以及与碘代苯作为供氧体的比较反应似乎排除了高价锰-氧代化合物作为反应性中间体。而是,高反应性可能是由于钨-过氧中间体以某种方式被相邻的锰原子唯一激活。 [参考:58]

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