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Olefin epoxidation with H2O2 in the presence of Mn(II) dicarboxylate coordination polymer catalysts

机译:在二羧酸锰(II)配位聚合物催化剂存在下用H2O2进行烯烃环氧化

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The Mn(II) dicarboxylate coordination polymers [Mn(μ-terephthalate)(H2O)2]_n, [Mn(μ-oxalate)(H2O)2]_n, and [Mn(μ-D-(-)-tartrate)]_n were prepared in water and characterized by FT-IR spectroscopy and CHN analysis. Particles of the terephthalate catalyst were also synthesized, by reaction of terephthalic acid and MnCl2·4H2O by a sonochemical method. The catalytic potential of these coordination polymers as slow-release sources of catalytically active Mn species was tested in the oxidation of cyclooctene to its epoxide in acetonitrile, using hydrogen peroxide as oxygen source. For the terephthalate species the catalytic activity was found to increase with increasing dielectric constant and dipole moment of the solvent (being highest in acetonitrile), with reaction temperature to a maximum at 60 °C, and with an imidazole co-catalyst (highest activity found for a imidazole-to-catalyst molar ratio of 20:1). Good activity with more than 64% conversion in 24 h was obtained for epoxidation of cyclooctene and cyclohexene, whereas low yields only were obtained from aryl-substituted olefins. Some exo versus endo regioselectivity was found for norbornene.
机译:Mn(II)二羧酸配位聚合物[Mn(μ-对苯二甲酸酯)(H2O)2] _n,[Mn(μ-草酸酯)(H2O)2] _n和[Mn(μ-D-(-)-酒石酸盐)在水中制备] _n,并通过FT-IR光谱和CHN分析表征。通过对苯二酸和MnCl2·4H2O通过声化学方法反应,还合成了对苯二甲酸酯催化剂的颗粒。使用过氧化氢作为氧源,在环丁烯在乙腈中氧化为环氧化物的过程中,测试了这些配位聚合物作为催化活性Mn的缓释源的催化潜力。对于对苯二甲酸酯类,发现其催化活性随溶剂的介电常数和偶极矩的增加而增加(在乙腈中最高),在60°C时反应温度最高,并且与咪唑助催化剂(发现最高的活性)有关。 (咪唑与催化剂的摩尔比为20:1)。对于环辛烯和环己烯的环氧化,在24小时内获得了超过64%转化率的良好活性,而仅由芳基取代的烯烃获得了低收率。发现降冰片烯的一些外向与内向区域选择性。

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