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Surface alloying of Pt monolayer on nanoporous gold for enhanced oxygen reduction

机译:PT单层对纳米多孔金的表面合金化,提高氧气减少

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The introduction of stabilizing elements, such as Au, has been recognized as an effective approach to increasing the durability of Pt electrocatalysts toward oxygen reduction reaction (ORR). However, significant tensile strain involved in this system leads to an undesirable decrease of its intrinsic ORR activity as compared to the native Pt, due to a similar to 3.8% tensile strain of Pt layer on Au core. In this work, we demonstrate that for a core-shell structured Pt monolayer on nanoporous gold (NPG), electrochemical potential-cycling can induce PtAu surface alloy formation, which results in unexpected improvement of its ORR activity. Theoretical calculations suggest that PtAu surface alloys possess more suitable configurations that give relatively low changes of free energy for the corresponding overpotential-determining step during ORR relative to Pt monolayer on Au. The improved ORR performance and high utilization of Pt make the nanoporous metal-based electrodes promising for green energy technologies. (C) 2018 Elsevier Ltd. All rights reserved.
机译:稳定元素如Au的引入已被认为是提高Pt电催化剂对氧还原反应(ORR)的耐久性的有效方法。然而,由于Au芯上的类似于3.8%的Pt层拉伸菌株,该系统涉及该系统中所涉及的显着的抗拉菌株导致其内在型锻造活性的不希望的降低。在这项工作中,我们证明,对于纳米多孔金(NPG)的核心壳结构PT单层,电化学电位循环可诱导PTAU表面合金形成,从而导致其ORR活性的意外改善。理论计算表明,PTAU表面合金具有更合适的配置,其在相对于Au上的Pt单层相对于Pt Monolayer期间,对相应的过电流确定步骤产生相对较低的自由能变化。 PT的改进的ORR性能和高利用率使纳米多孔金属基电极对绿色能源技术进行了前途。 (c)2018年elestvier有限公司保留所有权利。

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