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钯-(镍-锌)/C 阳极在直接醇燃料电池中对乙二醇和甘油的电氧化作用。

Electrooxidation of ethylene glycol and glycerol on Pd-(Ni-Zn)/C anodes in direct alcohol fuel cells.

机构信息

Istituto di Chimica dei Composti Organometallici, Consiglio Nazionale delle Ricerche via Madonna del Piano 10, 50019 Sesto Fiorentino, Italy.

出版信息

ChemSusChem. 2013 Mar;6(3):518-28. doi: 10.1002/cssc.201200866. Epub 2013 Feb 12.

Abstract

The electrooxidation of ethylene glycol (EG) and glycerol (G) has been studied: in alkaline media, in passive as well as active direct ethylene glycol fuel cells (DEGFCs), and in direct glycerol fuel cells (DGFCs) containing Pd-(Ni-Zn)/C as an anode electrocatalyst, that is, Pd nanoparticles supported on a Ni-Zn phase. For comparison, an anode electrocatalyst containing Pd nanoparticles (Pd/C) has been also investigated. The oxidation of EG and G has primarily been investigated in half cells. The results obtained have highlighted the excellent electrocatalytic activity of Pd-(Ni-Zn)/C in terms of peak current density, which is as high as 3300 A g(Pd)(-1) for EG and 2150 A g(Pd)(-1) for G. Membrane-electrode assemblies (MEA) have been fabricated using Pd-(Ni-Zn)/C anodes, proprietary Fe-Co/C cathodes, and Tokuyama A-201 anion-exchange membranes. The MEA performance has been evaluated in either passive or active cells fed with aqueous solutions of 5 wt % EG and 5 wt % G. In view of the peak-power densities obtained in the temperature range from 20 to 80 °C, at Pd loadings as low as 1 mg cm(-2) at the anode, these results show that Pd-(Ni-Zn)/C can be classified amongst the best performing electrocatalysts ever reported for EG and G oxidation.

摘要

已经研究了乙二醇(EG)和甘油(G)的电氧化:在碱性介质中,在被动和主动的直接乙二醇燃料电池(DEGFC)中,以及在含有 Pd-(Ni-Zn)/C 作为阳极电催化剂的直接甘油燃料电池(DGFC)中,Pd 纳米颗粒负载在 Ni-Zn 相上。为了进行比较,还研究了含有 Pd 纳米颗粒的阳极电催化剂(Pd/C)。主要在半电池中研究了 EG 和 G 的氧化。获得的结果突出了 Pd-(Ni-Zn)/C 在峰值电流密度方面的优异电催化活性,对于 EG 高达 3300 A g(Pd)(-1),对于 G 高达 2150 A g(Pd)(-1)。使用 Pd-(Ni-Zn)/C 阳极、专有 Fe-Co/C 阴极和 Tokuyama A-201 阴离子交换膜制造了膜电极组件(MEA)。MEA 性能在以 5 wt% EG 和 5 wt% G 的水溶液为燃料的被动或主动电池中进行了评估。考虑到在 20 至 80°C 的温度范围内获得的峰值功率密度,在阳极上的 Pd 负载低至 1 mg cm(-2),这些结果表明 Pd-(Ni-Zn)/C 可以归类为用于 EG 和 G 氧化的性能最佳的电催化剂之一。

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