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Superiority of Activated Carbon versus MCM-41for the Immobilization of Molybdenum Dithiocarbamate Complex as Heterogeneous Epoxidation Catalyst

机译:激活碳与MCM-41的优势对偶二硫代氨基甲酸酯复合物的固定为异质环氧化催化剂的优势

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摘要

Two heterogeneous catalysts were developed by covalent anchoring of molybdenum-dithiocarbamate complex onto the mesoporous silica (MCM-41) and activated carbon (AC). Characterization of the functionalized materials by various physicochemical techniques indicated that the molybdenum complex is grafted successfully on the surface of supports. Textural properties of the prepared catalysts proved that the surface properties of supports have been changed after grafting of molybdenum-dithiocarbamate complex. These heterogeneous catalysts were utilized for the epoxidation of olefins with tertbutyl hydroperoxide (TBHP) as oxidant, presenting high efficiency and facile recovery. These catalysts can be reused five times without apparent loss of their catalytic performance. Also, the effect of the nature of MCM-41 and AC supports on the catalytic activity has been discussed based on their hydrophobic and hydrophilic character.
机译:通过将钼 - 二苯甲酸酯配合物在介孔二氧化硅(MCM-41)和活性碳(AC)的共价锚定在共价锚定上,开发了两种异质催化剂。 通过各种理化技术对功能化材料的表征表明,钼复合物成功地在支撑表面上移植了。 制备的催化剂的纹理特性证明,钼 - 二硫代氨基酯配合物嫁接后,载体的表面特性已更改。 这些异质性催化剂用于用氧化剂用丁丁基氢过氧化物(TBHP)对烯烃的氧化作用,呈现高效率和便捷的恢复。 这些催化剂可以重复使用五次,而不会显然失去其催化性能。 同样,已经根据其疏水性和亲水性来讨论MCM-41和AC支持对催化活性的影响。

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