High-pressure CO oxidation on Pt(111) monitored with infrared-visible sum frequency generation (SFG)

被引:186
作者
Su, XC
Cremer, PS
Shen, YR
Somorjai, GA
机构
[1] UNIV CALIF BERKELEY,DEPT CHEM,BERKELEY,CA 94720
[2] UNIV CALIF BERKELEY,DEPT PHYS,BERKELEY,CA 94720
[3] UNIV CALIF BERKELEY,LAWRENCE BERKELEY LAB,DIV MAT SCI,BERKELEY,CA 94720
关键词
D O I
10.1021/ja9638723
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Catalytic CO oxidation on Pt(111) to CO2 was studied under atmospheric pressures of CO and O-2 and at various temperatures. Surface vibrational spectroscopy by sum frequency generation was used to probe the surface species, while the reaction rate and gas composition were simultaneously monitored by gas chromatography. Correlation between the turnover rates and the surface coverage of various CO species were utilized to identify the active CO species in the reaction. Ignition, above which the reaction becomes self-sustained, divides the reaction into two reactivity regimes. Below ignition, atop bonded CO appears as the major species on the surface, but the reaction rate is inversely proportional to the surface coverage of this species, indicating that it is not the active species but rather an inhibitor. The observed activation energy for the reaction in this regime suggests that desorption of atop CO is the rate-limiting step in the reaction. Above ignition, the atop CO becomes hardly detectable and the activation energy reduces to the one directly associated with the reaction energy barrier between adsorbed CO and O on Pt. In all cases, the reaction rate is linearly proportional to the surface coverage of CO adsorbed at non-registry sites or defect (or distorted) surface sites. They are therefore identified as the active CO species in this surface catalytic reaction.
引用
收藏
页码:3994 / 4000
页数:7
相关论文
共 43 条
[31]   A TIME RESOLVED ELECTRON-ENERGY LOSS SPECTROSCOPY STUDY OF CO ON PT(111) - ADSORPTION SITE OCCUPATIONS VERSUS COVERAGE AND TEMPERATURE [J].
MIEHER, WD ;
WHITMAN, LJ ;
HO, W .
JOURNAL OF CHEMICAL PHYSICS, 1989, 91 (05) :3228-3239
[32]   PHOTOCHEMISTRY OF ORIENTED MOLECULES COADSORBED ON SOLID-SURFACES - THE FORMATION OF CO2+O FROM PHOTODISSOCIATION OF O-2 COADSORBED WITH CO ON PT(111) [J].
MIEHER, WD ;
HO, W .
JOURNAL OF CHEMICAL PHYSICS, 1989, 91 (04) :2755-2756
[33]   CARBON-MONOXIDE OXIDATION OVER A PLATINUM POROUS FIBER GLASS SUPPORTED CATALYST [J].
NICHOLAS, DM ;
SHAH, YT .
INDUSTRIAL & ENGINEERING CHEMISTRY PRODUCT RESEARCH AND DEVELOPMENT, 1976, 15 (01) :35-40
[34]   THE POTENTIAL-ENERGY SURFACE, VIBRATIONAL PHASE RELAXATION AND THE ORDER-DISORDER TRANSITION IN THE ADSORPTION SYSTEM PT(111)-CO [J].
SCHWEIZER, E ;
PERSSON, BNJ ;
TUSHAUS, M ;
HOGE, D ;
BRADSHAW, AM .
SURFACE SCIENCE, 1989, 213 (01) :49-89
[35]  
Shen Y-R, 1984, PRINCIPLES NONLINEAR
[36]   SURFACE-PROPERTIES PROBED BY 2ND-HARMONIC AND SUM-FREQUENCY GENERATION [J].
SHEN, YR .
NATURE, 1989, 337 (6207) :519-525
[37]  
Shishu R.C., 1974, PLATIN MET REV, V18, P58
[38]   ON THE ADSORPTION OF CO ON PT(111) [J].
STEININGER, H ;
LEHWALD, S ;
IBACH, H .
SURFACE SCIENCE, 1982, 123 (2-3) :264-282
[39]   Pressure dependence (10(-10)-700 Torr) of the vibrational spectra of adsorbed CO on Pt(111) studied by sum frequency generation [J].
Su, XC ;
Cremer, PS ;
Shen, YR ;
Somorjai, GA .
PHYSICAL REVIEW LETTERS, 1996, 77 (18) :3858-3860
[40]   THERMAL EXCITATION OF OXYGEN SPECIES AS A TRIGGER FOR THE CO OXIDATION ON PT(111) [J].
YOSHINOBU, J ;
KAWAI, M .
JOURNAL OF CHEMICAL PHYSICS, 1995, 103 (08) :3220-3229