In situ ATR-FTIR study of oxygen reduction at the Pt/Nafion interface

被引:112
作者
Kunimatsu, K. [1 ]
Yoda, T. [2 ]
Tryk, D. A. [1 ]
Uchida, H. [1 ,3 ]
Watanabe, M. [1 ]
机构
[1] Univ Yamanashi, Fuel Cell Nanomat Ctr, Kofu, Yamanashi 4008510, Japan
[2] Univ Yamanashi, Interdisciplinary Grad Sch Med & Engn, Kofu, Yamanashi 4008510, Japan
[3] Univ Yamanashi, Clean Energy Res Ctr, Kofu, Yamanashi 4008510, Japan
关键词
PT-FE; TEMPERATURE-DEPENDENCE; INFRARED-SPECTROSCOPY; HYDROGEN ADSORPTION; NANOCAPSULE METHOD; ALLOY ELECTRODES; FUEL-CELL; SURFACE; PT(111); CO;
D O I
10.1039/b917306d
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
We have developed a new half-membrane-electrode assembly (MEA)-type cell that allows us to conduct attenuated total reflectance-Fourier transform infrared (ATR-FTIR) measurements at the Pt/Nafion interface under humidified N-2/O-2 atmosphere. The cell consists of a gas-diffusion type anode placed on a carbon separator with a gas flow field, a Pt film cathode deposited chemically on an Si ATR prism and a Nafion NRE (R) 211 electrolyte sandwiched between them. The construction allows the control of the atmosphere at the cathode by those at the anode via the electrolyte of 20-mu m thickness. An infrared absorption band was observed at 1400-1403 cm(-1) under humidified oxygen atmosphere in close association with the appearance of ORR current. Its absence under N-2 atmosphere and insensitivity to the change from H2O to D2O humidification led us to ascribe the band to the O-O vibration of the adsorbed oxygen molecule O-2(ads). The band intensity increased with increasing ORR current but decreased significantly in the limiting current region. However, the stability of the species at potentials as high as 1.1 V vs. the reversible hydrogen electrode (RHE) led us to rule out the possibility that the band could be due to adsorbed superoxide O-2(-).
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页码:621 / 629
页数:9
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