Probing Metal-Support Interaction in Reactive Environments: An in Situ Study of PtCo Bimetallic Nanoparticles Supported on TiO2

被引:31
作者
Papaefthimiou, V. [1 ]
Dintzer, T. [1 ]
Lebedeva, M. [1 ]
Teschner, D. [2 ]
Haevecker, M. [2 ,3 ]
Knop-Gericke, A. [2 ]
Schloegl, R. [2 ]
Pierron-Bohnes, V. [4 ]
Savinova, E. [1 ]
Zafeiratos, S. [1 ]
机构
[1] CNRS UdS, UMR 7515, LMSPC, F-67087 Strasbourg, France
[2] Fritz Haber Inst MPG, D-14195 Berlin, Dahlem, Germany
[3] Helmholtz Zentrum Berlin BESSY II, D-12489 Berlin, Germany
[4] CNRS UdS, IPCMS, UMR 7504, F-67034 Strasbourg 2, France
关键词
CORE-SHELL NANOPARTICLES; GAS SHIFT REACTION; X-RAY-ABSORPTION; TITANIUM-DIOXIDE; PHOTOELECTRON-SPECTROSCOPY; ROOM-TEMPERATURE; CARBON-MONOXIDE; OXIDE SURFACES; SHAPE CHANGES; WATER;
D O I
10.1021/jp302320s
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
Our recent surface characterization studies of extended and nanosized PtCo alloys under hydrogen and oxygen atmospheres, indicated significant and reversible surface segregation in response to the gas phase environment [J. Phys. Chem. Lett. 2011, 2, 900]. In the present communication, an insight into the effect of the support on the PtCo alloy stability is attempted. A model PtCo/TiO2 interface is investigated under reducing, oxidizing, and catalytic reaction conditions using ambient pressure Xray photoelectron and absorption spectroscopies (APPES and NEXAFS respectively). Encapsulation of PtCo by the TiO2 support was observed upon vacuum annealing. Upon oxidation/reduction conditions, a mixture of CoOy (1 <= y < 1.33), TiO2, and mixed CoxTiyOz phases with Pt located in the subsurface was formed. TiO2 was found to be remarkably stable under the temperature and pressure conditions used here (up to 620 K, 0.2 mbar), with titanium remaining always in the Ti4+ state. The interplay between the gas atmosphere and the surface is limited to modifications of the cobalt oxidation state. However, in contrast to the observations on the unsupported PtCo alloy, neither oxidation of CoO to Co3O4 in O-2 nor full reduction to metallic Co under various reducing agents (H-2, CH3OH), occurred. Synchronized changes of the binding energy position of core level photoelectron peaks in response to the gas phase are related to the band bending development at the gas/solid interface. This documents the direct coupling of the electronic properties and the gas phase chemical potential of a chemically functional material useful as catalyst or gas sensing device.
引用
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页码:14342 / 14349
页数:8
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