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Mesoporous carbon nanospheres with improved conductivity for electro-catalytic reduction of O-2 and CO2

机译:介孔碳纳米球,具有改善O-2和CO2的电催化还原电导率的导电性

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Isolated mesoporous carbon nanospheres doped with carbon nanotubes or nanohorns were obtained for the first time by a sol-gel synthesis. The presence of nanomaterials improves the electrical conductivity of the catalysts increasing the current storage capacity and the electrocatalytic performance. Ni-catalysts were also prepared by impregnation of the supports and by doping during the synthesis. Better Ni-dispersion was obtained in impregnated samples regarding doped ones where Ni-particles are mainly embedded in the carbonaceous matrix and affects the textural properties, especially the mesopores volume which increases with the spheres size. The presence of mesopores shown a positive effect in both electro-reduction reactions. All materials, present electro-catalytic activity in both O-2 and CO2 electro-reduction but in very different extension. The presence of carbon nanomaterials clearly improves the electro-activity in ORR even being good free-metal electro-catalysts, however, these nanomaterials does not improve the electro-activity in CO2 reduction. Ni addition improves the electro-activity in both reactions, however in the case of CO2 reduction, a good accessibility of Ni particles to the electrolyte is necessary. Finally, despite the very low contents of carbon nanomaterials and Ni the electro-catalytic results obtained are good enough and similar that those available in the literature based in carbon materials. (C) 2019 Elsevier Ltd. All rights reserved.
机译:通过溶胶 - 凝胶合成首次获得掺杂有碳纳米管或纳米山脉或纳米山脉的隔离的介孔碳纳米球。纳米材料的存在改善了催化剂的电导率,增加了电流储存能力和电催化性能。还通过在合成期间浸渍载体和掺杂来制备Ni催化剂。在关于掺杂物质的浸渍样品中获得更好的Ni-分散体,其中Ni-颗粒主要嵌入碳质基质中并影响纹理性质,特别是与球体尺寸增加的中孔体积。中孔的存在显示在电解反应中的正效应。所有材料,在O-2和CO 2电催化中呈现电催化活性,但在非常不同的延伸中。碳纳米材料的存在清楚地改善了甚至是良好的自由金属电催化剂中的电活性,然而,这些纳米材料不会改善CO 2中的电活性。添加改善两种反应中的电活性,然而在CO 2还原的情况下,需要对电解质的Ni颗粒的良好可访问性。最后,尽管碳纳米材料的含量非常低,但是获得的电催化结果足够好,并且类似于基于碳材料的文献中可用的那些。 (c)2019年elestvier有限公司保留所有权利。

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