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Pt-Au bimetallic nanoparticles decorated on reduced graphene oxide as an excellent electrocatalysts for methanol oxidation

机译:在还原的氧化石墨烯上修饰的Pt-Au双金属纳米颗粒是甲醇氧化的优良电催化剂

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摘要

In this study, we report a general and simple strategy for the synthesis of platinum nanoparticles (PtNPs), highly dispersed on reduced graphene oxide (RGO) substrate with Au nanoparticles. The electrochemically active surface area (ECSA) of the Pt-Au-RGO electrocatalyst is found to be higher than the Pt-RGO electrocatalyst, which is more comparable to a commercial Pt/C catalyst. The obtained ratio of the voltammetric forward peak current to the reverse peak current for the Pt-Au-RGO electrocatalyst (I-f/I-b = 2.33) is much higher than that of the Pt-RGO electrocatalyst (I-f/I-b = 1.16). This phenomenon is attributed to the synergistic effects of the Au and the RGO substrate, which help to enhance the electrochemical activity of Pt nanoparticles for methanol oxidation and carbonaceous poisoning resistance. The reported methanol oxidation is found to exhibit excellent electrocatalytic performance, reliability, and stability, surpassing that of several reported modified electrodes that can also be used for platinum-based catalysts in fuel cell applications. (C) 2016 Published by Elsevier B.V.
机译:在这项研究中,我们报告了一种合成铂纳米颗粒(PtNPs)的通用且简单的策略,该铂纳米颗粒高度分散在具有Au纳米颗粒的还原氧化石墨烯(RGO)基底上。发现Pt-Au-RGO电催化剂的电化学活性表面积(ECSA)高于Pt-RGO电催化剂,后者可与市售Pt / C催化剂相比。所获得的Pt-Au-RGO电催化剂的伏安正向峰值电流与反向峰电流之比(I-f / I-b = 2.33)远高于Pt-RGO电催化剂(I-f / I-b = 1.16)。这种现象归因于Au和RGO底物的协同作用,有助于增强Pt纳米颗粒对甲醇氧化和抗碳中毒的电化学活性。已发现报道的甲醇氧化表现出出色的电催化性能,可靠性和稳定性,超过了几种报道的修饰电极的电催化性能,这些修饰电极也可用于燃料电池应用中的铂基催化剂。 (C)2016由Elsevier B.V.发布

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