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Cobalt nanowires prepared by heterogeneous nucleation in propanediol and their catalytic properties

机译:丙二醇中异相成核制备的钴纳米线及其催化性能

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Co nanowires with a diameter of 10 nm and a length up to 1000 nm were synthesized by the chemical reduction of cobalt acetate in propanediol using Ru as the heterogeneous agent and stearic acid as the surfactant. The morphology of the Co nanomaterials depended strongly on the concentrations of stearic acid and sodium hydroxide and the temperature, which governed the reduction rate of Co2+ in the liquid and the growth rate of Co nanocrystals. Very tiny Ru nanoparticles formed at the beginning of the synthesis significantly lowered the reduction temperature of Co2+ species, affording an easy separation and growth of Co nanocrystals. Solid cobalt stearate and cobalt alkoxide were readily formed at the initial stage of the synthesis, which determined the reduction rate of Co2+ through a dynamic equilibrium between the solid and the solution. In addition to forming cobalt stearate, the stearic acid, as a structure-directing agent, mainly induced the anisotropic growth of Co nanocrystals. The Co nanowires as heterogeneous catalysts showed quite promising activity and selectivity for the hydrogenation of citral and the hydrogenolysis of glycerol.
机译:通过使用Ru作为非均相试剂和硬脂酸作为表面活性剂,通过化学还原丙二醇中的乙酸钴,合成了直径为10 nm,长度最大为1000 nm的Co纳米线。 Co纳米材料的形貌很大程度上取决于硬脂酸和氢氧化钠的浓度以及温度,这决定了液体中Co2 +的还原速率和Co纳米晶体的生长速率。在合成开始时形成的非常细小的Ru纳米颗粒显着降低了Co2 +物种的还原温度,使Co纳米晶体易于分离和生长。固态硬脂酸钴和烷氧基钴很容易在合成初期形成,这决定了固态与溶液之间的动态平衡,从而降低了Co2 +的还原速率。除形成硬脂酸钴外,硬脂酸作为结构导向剂还主要诱导了Co纳米晶体的各向异性生长。 Co纳米线作为多相催化剂对柠檬醛的氢化和甘油的氢解显示出非常有希望的活性和选择性。

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