Gold, Copper, and Platinum Nanoparticles Dispersed on CeOx/TiO2(110) Surfaces: High Water-Gas Shift Activity and the Nature of the Mixed-Metal Oxide at the Nanometer Level

被引:238
|
作者
Park, Joon B. [1 ]
Graciani, Jesus [1 ,2 ]
Evans, Jaime [3 ]
Stacchiola, Dario [1 ]
Senanayake, Sanjaya D. [1 ]
Barrio, Laura [1 ]
Liu, Ping [1 ]
Sanz, Javier Fdez. [2 ]
Hrbek, Jan [1 ]
Rodriguez, Jose A. [1 ]
机构
[1] Brookhaven Natl Lab, Dept Chem, Upton, NY 11973 USA
[2] Univ Seville, Dept Quim Fis, E-41012 Seville, Spain
[3] Cent Univ Venezuela, Fac Ciencias, Caracas 1020 A, Venezuela
关键词
CO OXIDATION; CATALYTIC-ACTIVITY; OXYGEN VACANCIES; IN-SITU; TIO2(110); AU; MECHANISM; AU(111); GROWTH; STM;
D O I
10.1021/ja9087677
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
At small coverages of ceria on TiO2(110), the CeOx nanoparticles have an unusual coordination mode. Scanning tunneling microscopy and density-functional calculations point to the presence of Ce2O3 dimers, which form diagonal arrays that have specific orientations of 0, 24, and 42 degrees with respect to the [1 1 0] direction of the titania substrate. At high coverages of ceria on TiO2(1 10), the surface exhibits two types of terraces. In one type, the morphology is not very different from that observed at low ceria coverage. However, in the second type of terrace, there is a compact array of ceria particles with structures that do not match the structures of CeO2(111) or CeO2(110). The titania substrate imposes on the ceria nanoparticles nontypical coordination modes, enhancing their chemical reactivity. This phenomenon leads to a larger dispersion of supported metal nanoparticles (M = Au, Cu, Pt) and makes possible the direct participation of the oxide in catalytic reactions. The M/CeOx/TiO2(110) surfaces display an extremely high catalytic activity for the water-gas shift reaction that follows the sequence Au/CeOx/TiO2(110) < Cu/CeOx/TiO2(110) < Pt/CeOx/TiO2(110). For low coverages of Cu and CeOx, Cu/CeOx/TiO2(110) is 8-12 times more active than Cu(111) or Cu/ZnO industrial catalysts. In the M/CeOx/TiO2(110) systems, there is a strong coupling of the chemical properties of the admetal and the mixed-metal oxide: The adsorption and dissociation of water probably take place on the oxide, CO adsorbs on the admetal nanoparticles, and all subsequent reaction steps occur at the oxide-admetal interface. The high catalytic activity of the M/CeOx/TiO2(110) surfaces reflects the unique properties of the mixed-metal oxide at the nanometer level.
引用
收藏
页码:356 / 363
页数:8
相关论文
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