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首页> 外文期刊>International journal of hydrogen energy >Pd nanoparticles on Co nanofilms as composite electrocatalysts for ethanol oxidation in alkaline solution
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Pd nanoparticles on Co nanofilms as composite electrocatalysts for ethanol oxidation in alkaline solution

机译:Co纳米膜上的Pd纳米颗粒作为复合电催化剂用于碱性溶液中乙醇的氧化

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摘要

Carbon-supported composite electrocatalysts of Pd nanoparticles implanted on Co nano-films (Pd-x/Co-nanofilm/C) were synthesized on an immiscible ionic liquid/water interface by a sequential reduction approach. Controllable metal nanostructures (Pd nanoparticles, Co nanofilms) and highly dispersed Pd-x/Co-nanofilms on carbon are achieved through simple strategies. The Pd nanoparticles implanted on Co nanofilms evidently exhibit crystal lattice distortion and surface roughness. Thus prepared Pd-3/Co-nanofilm/C catalyst demonstrates the highest activity toward ethanol oxidation reaction (EOR), with the lowest onset potential shifting negatively about 100 mV, the most negative peak potential, and the highest peak current compared with those of Pd3Co/C and pure Pd/C catalysts in alkaline solution. Chronoamperometric results also demonstrate higher current values produced by the Pd-3/Co-nanofilm/C catalyst. We proposed that the EOR activity enhancement of Pd-x/Co-nanofilm/C catalysts may be attributed to a modulation of the structural properties of Pd nanoparticles through the 2D Co-nanofilm substrate, as well as a synergistic effect between Pd nanoparticles and the Co-nanofilm substrate. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:通过顺序还原的方法,在不混溶的离子液体/水界面上合成了植入到Co纳米膜上的Pd纳米粒子的碳载复合电催化剂(Pd-x / Co-纳米膜/ C)。通过简单的策略即可实现可控的金属纳米结构(Pd纳米颗粒,Co纳米膜)和碳上高度分散的Pd-x / Co-纳米膜。植入Co纳米薄膜上的Pd纳米粒子显然表现出晶格畸变和表面粗糙度。如此制备的Pd-3 / Co-nanofilm / C催化剂显示出最高的乙醇氧化反应(EOR)活性,最低起始电势负向移动约100 mV,最大负峰值电势,以及最高峰值电流。碱性溶液中的Pd3Co / C和纯Pd / C催化剂。计时电流分析结果还表明,Pd-3 / Co-纳米膜/ C催化剂产生的电流值更高。我们提出Pd-x / Co-nanofilm / C催化剂的EOR活性增强可能归因于通过2D Co-nanofilm底物对Pd纳米颗粒的结构特性的调节,以及Pd纳米颗粒与Pd-x / Co-nanofilm / C催化剂之间的协同作用。共纳米膜基材。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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