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Enhanced Hydrogen Storage Properties of MgH2 Using a Ni and TiO2 Co-Doped Reduced Graphene Oxide Nanocomposite as a Catalyst

机译:使用Ni和TiO 2共掺杂的石墨烯氧化物纳米复合材料增强MGH2的储氢性能作为催化剂

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To improve the hydrogen storage properties of Mg/MgH2, a Ni and TiO2 co-doped reduced graphene oxide ((Ni-TiO2)@rGO) nanocomposite is synthesized by a facile impregnation method and introduced into Mg via ball milling. The results demonstrated that the dispersive distribution of Ni and TiO2 with a particle size of 20–200 nm in the reduced graphene oxide matrix led to superior catalytic effects on the hydrogen storage properties of Mg-(Ni-TiO2)@rGO. The initial hydrogenation/dehydrogenation temperature for Mg-(Ni-TiO2)@rGO decreased to 323/479 K, 75/84 K lower than that of the additive-free sample. The hydrogen desorption capacity of the Mg-(Ni-TiO2)@rGO composite released 1.47 wt.% within 120 min at 498 K. When the temperature was increased to 523 K, the hydrogen desorption capacity increased to 4.30 wt.% within 30 min. A hydrogenation/dehydrogenation apparent activation energy of 47.0/99.3 kJ·mol-1 was obtained for the Mg-(Ni-TiO2)@rGO composite. The improvement in hydrogenation and dehydrogenation for the Mg-(Ni-TiO2)@rGO composite was due to the reduction of the apparent activation energy by the catalytic action of (Ni-TiO2)@rGO.
机译:为了改善Mg / MgH2的储氢性能,通过容易浸渍方法合成Ni和TiO 2共掺杂的石墨烯((Ni-TiO 2)@Rgo)纳米复合材料,并通过球磨将Mg引入Mg。结果表明,在还原的石墨烯基质中,粒径为20-200nm的Ni和TiO 2的分散分布导致了对Mg-(Ni-TiO2)@RGO的储氢性能的优异催化作用。 Mg-(Ni-TiO2)的初始氢化/脱氢温度降至323/479k,75/84k低于无添加剂样品。 Mg-(Ni-TiO2)@Rgo复合材料的氢解吸能力在498K中释放1.47重量%。当温度升至523k时,氢解吸能力在30分钟内增加至4.30重量%。% 。获得47.0 / 99.3kJ·Mol-1的氢化/脱氢表观活化能量,用于Mg-(Ni-TiO 2)@RGO复合材料。 Mg-(Ni-TiO 2)培养和脱氢的改善是由于(Ni-TiO 2)@RGO的催化作用降低了表观活化能量。

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