Methanol Oxidation Over a Pt/C Catalyst at High Temperatures and Pressure: An Online Electrochemical Mass Spectrometry Study

被引:25
作者
Chojak-Halseid, M. [1 ]
Jusys, Z. [1 ]
Behm, R. J. [1 ]
机构
[1] Univ Ulm, Inst Catalysis & Surface Chem, D-89069 Ulm, Germany
关键词
OXYGEN REDUCTION ACTIVITY; 1ST PRINCIPLES ANALYSIS; FUEL-CELL CATALYSTS; IN-SITU; POLYCRYSTALLINE PLATINUM; FORMALDEHYDE YIELDS; CARBON-MONOXIDE; INITIAL STEPS; CO OXIDATION; FLOW-CELL;
D O I
10.1021/jp107398g
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
The influence of elevated reaction temperatures (up to 100 degrees C) on the characteristics of the methanol electrooxidation reaction over carbon-supported Pt catalysts was investigated by high-temperature/high-pressure differential electrochemical mass spectrometry (HT/HP DEMS), at up to 100 degrees C and 3 bar overpressure. The total reaction rate and that for CO2 formation were followed by potentiodynamic and potentiostatic measurements, performed under fuel cell relevant, but nevertheless well-defined, reaction and transport conditions. Activation energies for the overall methanol oxidation process and for the specific pathway to CO2 formation as well as the current efficiency for CO2 production were determined over a wide range of potentials and temperatures; the influence of the electrolyte flow rates and of the catalyst loading was tested. Most important, the apparent activation energies for CO2 formation were generally larger than those for the overall reaction, leading to an increasing selectivity for CO2 formation with temperature and complete conversion to CO2 at similar to 100 degrees C reaction temperature under present reaction conditions. The resulting trends are discussed in a mechanistic picture, including transport effects. Consequences for applications in direct methanol fuel cells (DMFCs) are discussed.
引用
收藏
页码:22573 / 22581
页数:9
相关论文
共 87 条
[31]   Temperature dependence of CO chemisorption and its oxidative desorption on the Pt(111) electrode [J].
Herrero, E ;
Feliu, JM ;
Blais, S ;
Radovic-Hrapovic, Z ;
Jerkiewicz, G .
LANGMUIR, 2000, 16 (11) :4779-4783
[32]   Temperature dependence of the COads oxidation process on Pt(111) Pt(100), and Pt(110) electrodes [J].
Herrero, E ;
Alvarez, B ;
Feliu, JM ;
Blais, S ;
Radovic-Hrapovic, Z ;
Jerkiewicz, G .
JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 2004, 567 (01) :139-149
[33]   Family of high-temperature polymer-electrolyte membranes synthesized from amphiphilic nanostructured macromolecules [J].
Honma, I ;
Nakajima, H ;
Nishikawa, O ;
Sugimoto, T ;
Nomura, S .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2003, 150 (05) :A616-A619
[34]  
Iwasita T., 2003, HDB FUEL CELLSFUNFAM, V2, P603
[35]  
Iwasita-Vielstich T., 1990, ADV ELECTROCHEMICAL, P127
[36]   A first principles analysis of the electro-oxidation of CO over Pt(111) [J].
Janik, Michael J. ;
Neurock, Matthew .
ELECTROCHIMICA ACTA, 2007, 52 (18) :5517-5528
[37]  
Jarvi TD, 1998, FRONT ELECT, P75
[38]   Methanol oxidation on a carbon-supported Pt fuel cell catalyst - A kinetic and mechanistic study by differential electrochemical mass spectrometry [J].
Jusys, Z ;
Behm, RJ .
JOURNAL OF PHYSICAL CHEMISTRY B, 2001, 105 (44) :10874-10883
[39]   Methanol electrooxidation over Pt/C fuel cell catalysts: Dependence of product yields on catalyst loading [J].
Jusys, Z ;
Kaiser, J ;
Behm, RJ .
LANGMUIR, 2003, 19 (17) :6759-6769
[40]   DEMS Analysis of Small Organic Molecule Electrooxidation: A High-Temperature High-Pressure DEMS study [J].
Jusys, Z. ;
Behm, R. J. .
PROTON EXCHANGE MEMBRANE FUEL CELLS 8, PTS 1 AND 2, 2008, 16 (02) :1243-1251