Oxidation of Methanol on Oxygen Covered Ptn/Ru(0001) Layers

被引:10
|
作者
Gazdzicki, Pawel
Thussing, Sebastian
Jakob, Peter [1 ]
机构
[1] Univ Marburg, Fachbereich Phys, D-35032 Marburg, Germany
来源
JOURNAL OF PHYSICAL CHEMISTRY C | 2011年 / 115卷 / 46期
关键词
TEMPERATURE FUEL-CELLS; FORMIC-ACID; INFRARED-SPECTROSCOPY; RH(111)-(2X2)O SURFACES; METAL-SURFACES; CO ADSORPTION; FORMATE; PT(111); RU(001); DECOMPOSITION;
D O I
10.1021/jp207458g
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
Thin pseudomorphic as well as thick "Pt(111)- like" Pt/Ru(0001) bimetallic substrates have been used to study the oxidation of methanol (CD3OH) to CO2. Specifically, molecular (cold deposited) and ordered atomic (annealed) oxygen precovered Pt-n/Ru(0001) layers with n = 1-15 ML have been studied. Thereby, the thickness of the Pt films primarily influences the adsorption probability of O-2 and much less the energy barriers for methanol reactions. In particular, no indication of a strain effect could be detected, and the reactions of methanol on Pt-n/Ru(0001) multilayer films closely follow the known reaction scheme on Pt(111) substrates: On O-2/Pt-n/Ru(0001), methanol is directly oxidized to formate (DCOO) and eventually desorbs as CO2 (300 K). The formate producing reaction is thereby promoted by dissociating O-2 molecules (130 K) and, at higher temperatures (130-200 K), by disordered atomic oxygen. This is in contrast to methanol postadsorbed onto ordered atomic oxygen covered Pt-n/Ru(0001) layers, which exhibit formaldehyde formation and decomposition to CO and H. Interestingly, during methanol dissociation at 160-200 K, a remarkable fraction of methanol molecules experiences an H <-> D exchange of the hydroxyl group hydrogen, leading to the dominant desorption of CD3OD. Our observation that the relative fraction of desorbing CD3OH is exceptionally low implies a bold primary isotope effect, which we attribute to the dissimilar zero point energies associated with OH and OD vibrations of methanol.
引用
收藏
页码:23013 / 23022
页数:10
相关论文
共 50 条
  • [21] COMPRESSION PHASES IN COPPER-OXYGEN COADSORPTION LAYERS ON A RU(0001) SURFACE
    SCHMIDT, M
    WOLTER, H
    SCHICK, M
    KALKI, K
    WANDELT, K
    SURFACE SCIENCE, 1993, 287 : 983 - 987
  • [22] Dissociation of water on atomic oxygen-covered Rh nanoclusters supported on graphene/Ru(0001)
    Huang, Yi-Cheng
    Yen, Hung-Yu
    Lan, Liang-Wei
    Dutta, D.
    Rahmah, A.
    Lai, Yu-Ling
    Hsu, Yao-Jane
    Kuo, Chien-Cheng
    Wang, Jeng-Han
    Luo, Meng-Fan
    JOURNAL OF CHEMICAL PHYSICS, 2021, 155 (07):
  • [23] Electronic Properties of Sulfur Covered Ru(0001) Surfaces
    Pisarra, Michele
    Diaz, Cristina
    Bernardo-Gavito, Ramon
    Jesus Navarro, Juan
    Black, Andres
    Calleja, Fabian
    Granados, Daniel
    Miranda, Rodolfo
    Vazquez de Parga, Amadeo L.
    Martin, Fernando
    JOURNAL OF PHYSICAL CHEMISTRY A, 2018, 122 (08): : 2232 - 2240
  • [24] CO INTERACTIONS WITH COPPER-COVERED RU(0001)
    BADER, SD
    RICHTER, L
    CAO, PL
    ELLIS, DE
    FREEMAN, AJ
    JOURNAL OF VACUUM SCIENCE & TECHNOLOGY A-VACUUM SURFACES AND FILMS, 1983, 1 (02): : 1185 - 1187
  • [25] CO oxidation reaction over oxygen-rich Ru(0001) surfaces
    Böttcher, A
    Niehus, H
    Schwegmann, S
    Over, H
    Ertl, G
    JOURNAL OF PHYSICAL CHEMISTRY B, 1997, 101 (51): : 11185 - 11191
  • [26] Formation of subsurface oxygen at Ru(0001)
    Bottcher, Artur
    Niehus, Horst
    Journal of Chemical Physics, 1999, 110 (2-12): : 3186 - 3195
  • [27] Oxygen adsorbed on oxidized Ru(0001)
    Böttcher, A
    Niehus, H
    PHYSICAL REVIEW B, 1999, 60 (20): : 14396 - 14404
  • [28] Formation of subsurface oxygen at Ru(0001)
    Böttcher, A
    Niehus, H
    JOURNAL OF CHEMICAL PHYSICS, 1999, 110 (06): : 3186 - 3195
  • [29] Formation of Methoxy on Cu/Ru(0001) Layers
    Gazdzicki, Pawel
    Jakob, Peter
    JOURNAL OF PHYSICAL CHEMISTRY C, 2011, 115 (05): : 1961 - 1968
  • [30] The Resistivity Size Effect in Epitaxial Ru(0001) and Co(0001) Layers
    Milosevic, Erik
    Kerdsongpanya, Sit
    Gall, Daniel
    2018 IEEE NANOTECHNOLOGY SYMPOSIUM (ANTS), 2018,