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首页> 外文期刊>Electrochimica Acta >Pt-Pd and Pt-Pd-(Cu or Fe or Co)/graphene nanoribbon nanocomposites as efficient catalysts toward the oxygen reduction reaction
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Pt-Pd and Pt-Pd-(Cu or Fe or Co)/graphene nanoribbon nanocomposites as efficient catalysts toward the oxygen reduction reaction

机译:Pt-Pd和Pt-Pd-(Cu或Fe或Co)/石墨烯纳米孔纳米复合材料作为氧气还原反应的有效催化剂

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The slow kinetics of the oxygen reduction reaction (ORR) has driven the search for more efficient and less costly electrocatalysts. This can be achieved using catalysts containing a relatively small amount of Pt supported onto a graphene surface, such as Pt-Pd or Pt-Pd-M (M = Cu, Co, Fe) alloys supported onto graphene nanoribbons (GNRs)-the nanocomposites synthesized in the present study. Both nanoparticle and GNR shapes and sizes are shown to be important factors for the electrocatalytic effect toward ORR, as are GNR conductivity, metal alloy surface-adjacent composition, and presence of metal oxides in the structure of the GNR-supported nanoparticle. Pt-Pd-Cu/GNR, the most efficient electrocatalyst obtained, exhibits a mass-specific activity of 0.70 mA mu g(PGM)(-1) (PGM = platinum-group metal) and specific activity of 1.30 mA cm(-2) at 0.93 ViR-free, better than that of Pt-Pd-Cu/C at 0.90 ViR-free. Pt-Pd/GNR and Pt-Pd'/GNR nanocomposites are highly stable. (C) 2017 Elsevier Ltd. All rights reserved.
机译:氧还原反应(ORR)的缓慢动力学推动了寻求更有效和更昂贵的电催化剂。这可以使用含有含有相对少量的PT的催化剂来实现,所述催化剂负载在石墨烯表面上,例如Pt-Pd或Pt-Pd-M(m = Cu,Co,Fe)合金,其支持在石墨烯纳米纤维(GNRS) - 纳米复合材料上在本研究中合成。两个纳米颗粒和GNR的形状和尺寸被示出为用于朝向ORR电催化效果的重要因素,因为是GNR的导电性,金属合金表面相邻的组合物,并在GNR支持纳米粒子的结构的金属氧化物的存在下进行。 Pt-Pd-Cu / GNR,最有效的电催化剂,表现出0.70mA mu g(pGM)( - 1)(PGM =铂 - 基金金属)的质量特异性活性,并且比活性为1.30 mA cm(-2 )在0.93 VIR-PD-CU / C的无VIS-PT-PD-CU / C处于0.90无VIAT。 PT-PD / GNR和PT-PD'/ GNR纳米复合材料非常稳定。 (c)2017 Elsevier Ltd.保留所有权利。

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