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Methanol Oxidation in Alkaline Medium Using PtIn/C Electrocatalysts

机译:PtIn / C电催化剂在碱性介质中的甲醇氧化

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Pt/C and PtIn/C with atomic ratios of 90:10, 70:30, and 50:50 were investigated for methanol electro-oxidation in alkaline media by using cyclic voltammetry (CV), chronoamperometry (CA), and direct methanol alkaline fuel cell (DMAFC). All electrocatalysts were synthesized using sodium borohydride method with 20 wt% of metals loading on carbon. X-ray diffraction (XRD) analysis revealed that bimetallic PtIn had faced centered cubic structure and, also, confirmed alloy formation for PtIn/C nanoparticles. Transmission electron micrographs showed metal nanoparticles with average particle size between 3.0 and 5.0 nm; however, the particle size increases when the In content was increased in PtIn/C. In the CV experiments, the onset potential of methanol electro-oxidation shifted to lower values as the indium content increased. Chronoamperometry experiments and direct methanol alkaline fuel cell suggested PtIn/C (70:30) as the most promising material for methanol electro-oxidation: this result could be explained by the presence of Pt and In in close contact (electronic effect) as the occurrence of oxy-hydroxy interactions.
机译:通过循环伏安法(CV),计时电流法(CA)和直接甲醇碱性研究了原子比为90:10、70:30和50:50的Pt / C和PtIn / C在甲醇中的甲醇电氧化燃料电池(DMAFC)。使用硼氢化钠方法合成了所有的电催化剂,其中有20 wt%的金属负载在碳上。 X射线衍射(XRD)分析表明,双金属PtIn具有面向中心的立方结构,并且还证实了PtIn / C纳米颗粒的合金形成。透射电子显微照片显示金属纳米粒子的平均粒径在3.0到5.0 nm之间。但是,当PtIn / C中的In含量增加时,粒径增大。在恒压实验中,随着铟含量的增加,甲醇电氧化的起始电势转移到较低的值。计时电流法实验和直接甲醇碱性燃料电池表明,PtIn / C(70:30)是甲醇电氧化的最有希望的材料:这一结果可以通过发生Pt和In紧密接触(电子效应)来解释。羟基相互作用。

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