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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Carbon-Supported Bimetallic Platinum-Iron Nanocatalysts: Application in Direct Borohydride/Hydrogen Peroxide Fuel Cell
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Carbon-Supported Bimetallic Platinum-Iron Nanocatalysts: Application in Direct Borohydride/Hydrogen Peroxide Fuel Cell

机译:碳支持的双金属铂 - 铁纳米催化剂:在直接硼氢化物/氢过氧化氢燃料电池中的应用

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摘要

Carbon-supported bimetallic platinum-iron nanocatalysts (Pt-Fe/C) with various proportions of atoms, applied to direct borohydride/peroxide fuel cell (DBHFC) anode catalyst, are facilely prepared via a simple and low-cost chemical route in aqueous solution at ambient temperature. Transmission electron microscopy and X-ray diffraction results show the Pt-Fe alloy structure's existence as well as the mean crystallite size of around 3 nm for Pt-Fe nanoparticles. Enhanced catalytic activity of Pt-Fe/C to BH4- electro-oxidation has been observed in electrochemical test (chronoamperometry, cyclic voltammetry, single fuel cell test, and rotating disc electrode voltammetry) results, and Pt67Fe33/C shows the best catalytic performance. High maximum power density of 65 mW cm(-2) for DBHFC is acquired by using Pt67Fe33/C as anode at 25 degrees C. Furthermore, the electron-transfer number (n) related to BH4- oxidation is evaluated, and n of 4.9 can be achieved on Pt67Fe33/C electrode.
机译:碳支持的双金属铂 - 铁纳米催化剂(Pt-Fe / c)具有各种比例的原子,其应用于直接硼氢化物/过氧化物燃料电池(DBHFC)阳极催化剂,通过在水溶液中的简单和低成本的化学途径进行施用 在环境温度下。 透射电子显微镜和X射线衍射结果表明PT-Fe合金结构的存在以及PT-Fe纳米颗粒的平均微晶尺寸约为3nm。 在电化学试验中观察到增强Pt-Fe / C至BH4-电氧化的催化活性,在电化学试验中观察到(循环伏安法,单燃料电池试验和旋转盘电极伏安法)的结果,PT67FE33 / c显示出最佳的催化性能。 通过使用PT67FE33 / C在25摄氏度下以阳极使用PT67FE33 / C获得的高最大功率密度为DBHFC。此外,评估与BH4-氧化相关的电子转移数(N),N为4.9 可以在PT67FE33 / C电极上实现。

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