期刊论文详细信息
RENEWABLE ENERGY 卷:81
Experimental study of characteristics of bimetallic Pt-Fe nano-particle fuel cell electrocatalyst
Article
Yao, Jun1  Yao, Yufeng2 
[1] Lincoln Univ, Brayford Pool LN6 7TS, Lincoln, England
[2] Univ W England, Bristol BS16 1QY, Avon, England
关键词: Bimetallic nano-particle fuel cell;    Pt-Fe/Y zeolite;    Electrocatalytic performance;    Bonding distance;    Extended X-ray adsorption fine structure;    Cyclic voltammetry (CV);   
DOI  :  10.1016/j.renene.2015.03.031
来源: Elsevier
PDF
【 摘 要 】

The characteristics of 1.5 wt% Platinum (Pt) loading on Fe incorporated Y zeolite (Pt-Fe/Y zeolite) nano-electrocatalysts have been experimentally studied by the extended X-ray adsorption fine structure (EXAFS) and cyclic voltammetry (CV) techniques using Nafion bound electrode to determine Pt electrocatalytic performance in direct methanol fuel cell. The Pt particle size was found to be small in electrochemical environment (0.7 nm with 55 atoms). Study implies that the Pt electrocatalytic performance can be affected by the Pt cluster electron deficiency, due to the change of Pt particle size associated with the lattice strain energy. The CV measurement in the hydride region indicated higher Pt dispersion for Pt-Fe/Y zeolite electrocatalyst chemically reduced in H-2 at 400 degrees C (15PtFeancr4), compared to that of Pt/Y zeolite reduced at 400 degrees C (15Ptancr4) and Pt-Fe/Y zeolite electrocatalysts reduced at 300 degrees C (15PtFeancr3), respectively. This provided further implication that the chemical reduction temperature would be important for achieving a higher Pt dispersion. The present study has revealed two possible electron transfer pathways that might contribute to the Pt electronic conduction: (1) the surface mobility of adsorbed species; (2) the hydrogen atoms/H+ ion spillover through the zeolite framework and on the electrode surface, despite the DC insulator nature of zeolite. (C) 2015 Elsevier Ltd. All rights reserved.

【 授权许可】

Free   

【 预 览 】
附件列表
Files Size Format View
10_1016_j_renene_2015_03_031.pdf 2576KB PDF download
  文献评价指标  
  下载次数:0次 浏览次数:0次