Investigation of the NO+H2 reaction on Pt{100} with low-energy electron microscopy

被引:10
作者
Rausenberger, B [1 ]
Swiech, W [1 ]
Schmid, AK [1 ]
Rastomjee, CS [1 ]
Engel, W [1 ]
Bradshaw, AM [1 ]
机构
[1] Max Planck Gesell, Fritz Haber Inst, D-14195 Berlin, Germany
来源
JOURNAL OF THE CHEMICAL SOCIETY-FARADAY TRANSACTIONS | 1998年 / 94卷 / 07期
关键词
D O I
10.1039/a708243f
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 reaction between NO and hydrogen on Pt{100} has been studied during transient changes of the partial pressure ratio of the reactants at constant substrate temperature using low-energy electron microscopy (LEEM), mirror electron microscopy (MEM) and selected-area low-energy electron diffraction (LEED). Surface steps and other mesoscopic defects are found to influence the nucleation and propagation of the reaction-diffusion fronts (RDFs) which develop when the NO/H-2 partial pressure ratio is decreased. In particular, LEEM and MEM show that RDF propagation is hindered by surface steps which cause a laterally anisotropic and jump-like ('stop-and-go') propagation. The surface crystallography, on the other hand, has no influence on the RDF propagation characteristics. In LEED only two relatively diffuse patterns in the areas in front of and behind the RDF were observed. The actual border of the front has a width of less than the spatial resolution limit of the instrument, i.e. < 100 nm. At T = 395 K a switch from heterogeneous, defect-related front nucleation to homogeneous, defect-free nucleation was observed. The analysis of the RDF nucleation and propagation characteristics and their temperature dependence reveal how the diffusion of NO and hydrogen on the Pt{100} surface is dependent on the presence of steps and defects. Finally, we present a model for the NO + H-2 reaction on Pt{100} which qualitatively explains the observed phenomena.
引用
收藏
页码:963 / 970
页数:8
相关论文
共 37 条
[1]   LOW-ENERGY-ELECTRON MICROSCOPY [J].
BAUER, E .
REPORTS ON PROGRESS IN PHYSICS, 1994, 57 (09) :895-938
[2]   STRUCTURE SENSITIVITY OF NO ADSORPTION ON A SMOOTH AND STEPPED PT(100) SURFACE [J].
BONZEL, HP ;
BRODEN, G ;
PIRUG, G .
JOURNAL OF CATALYSIS, 1978, 53 (01) :96-105
[3]   PHOTOELECTRON-SPECTROSCOPY OF NO ADSORBED ON PT(100) [J].
BONZEL, HP ;
PIRUG, G .
SURFACE SCIENCE, 1977, 62 (01) :45-60
[4]   INTERACTION OF HYDROGEN WITH SOLID-SURFACES [J].
CHRISTMANN, K .
SURFACE SCIENCE REPORTS, 1988, 9 (1-3) :1-163
[5]   CHEMISORPTION AND MACROSCOPIC DIFFUSION OF NO ON PT(111) [J].
CROCI, M ;
FELIX, C ;
VANDONI, G ;
HARBICH, W ;
MONOT, R .
SURFACE SCIENCE, 1994, 307 :460-464
[6]   KINETIC OSCILLATIONS IN THE PLATINUM-CATALYZED OXIDATION OF CO [J].
ERTL, G ;
NORTON, PR ;
RUSTIG, J .
PHYSICAL REVIEW LETTERS, 1982, 49 (02) :177-180
[7]  
Ertl G., 1990, ADV CATAL, V37, P213
[8]   THE MECHANISM OF THE EXPLOSIVE NO+CO REACTION ON PT(100) - EXPERIMENTS AND MATHEMATICAL-MODELING [J].
FINK, T ;
DATH, JP ;
BASSETT, MR ;
IMBIHL, R ;
ERTL, G .
SURFACE SCIENCE, 1991, 245 (1-2) :96-110
[9]   A TPD STUDY OF NITRIC-OXIDE DECOMPOSITION ON PT(100), PT(411) AND PT(211) [J].
GOHNDRONE, JM ;
MASEL, RI .
SURFACE SCIENCE, 1989, 209 (1-2) :44-56
[10]   DIFFUSION OF ADSORBATES ON METAL-SURFACES [J].
GOMER, R .
REPORTS ON PROGRESS IN PHYSICS, 1990, 53 (07) :917-1002