Enhanced catalytic activity of supported nanostructured Pd for the oxidation of organic molecules using γ-Fe2O3 and Fe3O4 as co-electrocatalysts

被引:13
|
作者
Solis-Tobias, J. E. [1 ]
Diaz-Guillen, J. A. [1 ]
Melendez-Gonzalez, P. C. [2 ]
Sanchez-Padilla, N. M. [2 ]
Perez-Hernandez, R. [3 ]
Alonso-Lemus, I. L. [4 ]
Rodriguez-VareIa, F. J. [2 ]
机构
[1] Inst Tecnol Saltillo, Saltillo 25280, Coahuila, Mexico
[2] CINVESTAV, Unidad Saltillo, Sustentabilidad Recursos Nat & Energia, Av Ind Met 1062,Parque Ind Saltillo Ramos, Ramos Arizpe 25900, Coah, Mexico
[3] Inst Nacl Invest Nucl, Carr Mexico Toluca S-N, Ocoyoacac 52750, Edo De Mexico, Mexico
[4] CINVESTAV, Unidad Saltillo, CONACYT, Sustentabilidad Recursos Nat & Energia, Ramos Arizpe, Coah, Mexico
关键词
Maghemite and magnetite; Co-catalysts; Pd/C; Oxidation of organic molecules; Alkaline media; A-DAFCs; ALCOHOL FUEL-CELLS; ETHYLENE-GLYCOL; ETHANOL; ELECTROOXIDATION; PALLADIUM; METHANOL; NANOPARTICLES; GLYCEROL; XPS;
D O I
10.1016/j.ijhydene.2017.08.112
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Pd-Fe2O3/C and Pd-Fe3O4/C electrocatalysts were evaluated for the oxidation of methanol, ethanol, ethylene glycol, glycerol and isopropanol in 1 mol L-1 KOH. The Pd-iron oxides anodes as well as Pd/C were synthesized using NaBH4 and Vulcan XC-72 as support. XRD results showed the crystalline nature of the electrocatalysts. The Pd-iron oxides anodes demonstrated a higher performance compared to Pd/C for the reactions. A comparison of the maghemite and magnetite-containing electrocatalysts indicated a similar catalytic activity considering the onset potential (E-onset). Nevertheless, Pd-Fe2O3/C delivered slightly higher mass peak current densities in the forward scan (j(f)). The highest current densities were obtained from the EGOR. XPS analysis indicated the presence of Pd-0 and Pd2+ species on both electrocatalyst, as well as gamma-Fe2O3 and Fe3O4 (for the corresponding anode). The higher catalytic activity of Pd-Fe2O3/C and Pd-Fe3O4/C relative to Pd/C was attributed to the fact that maghemite and magnetite promote the reactions via the bifunctional mechanism. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:30301 / 30309
页数:9
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