4.6 Article

Preparation and characterization of palladium-nickel on graphene oxide support as anode catalyst for alkaline direct ethanol fuel cell

期刊

APPLIED CATALYSIS A-GENERAL
卷 531, 期 -, 页码 29-35

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.apcata.2016.11.034

关键词

PdNi; Graphene oxide; Ethanol oxidation reaction; Electrocatalysis; Direct ethanol fuel cell; Anode catalyst

资金

  1. Philippine Council for Industry, Energy and Emerging Technology Research and Development of the Department of Science and Technology (PCIEERD-DOST) for the research grant of B.J.V.T [03118]
  2. Accelerated Science and Technology Human Resource Development Program - National Science Consortium (ASTHRDP-NSC) of the Science Education Institute (SEI), DOST for the scholarship grant of J.L.T

向作者/读者索取更多资源

A catalyst consisting of palladium nickel supported on exfoliated graphene oxide (PdNi/EGO) composite was synthesized. The catalytic activity was tested for ethanol oxidation reaction (EOR) in half-cell using cyclic voltammetry (CV) and subsequently it was used as an anode material in a direct ethanol fuel cell (DEFC). Transmission Electron Microscopy showed the catalyst particles are uniformly dispersed on the surface of graphene oxide with the particle size ranging from 3 to 6 nm. X-ray Photoelectron Spectroscopy analysis of catalysts revealed that the surface consisting of mostly Pd, PdO, Ni(OH)(2), and NiOOH. CV and chronoamperometry measurements demonstrated higher electrocatalytic activity and stability for PdNi/EGO in the alkaline medium than the unsupported PdNi and carbon black-supported PdNi (PdNi/C) catalysts. A single cell anion exchange membrane DEFC constructed with a PdNi/EGO anode catalyst showed a maximum power density of 16.6 m Wcm(-2) at 50 degrees C, which is higher than the unsupported PdNi, PdNi/C, and commercial Pd/C catalyst. (C) 2016 Elsevier B.V. All rights reserved.

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