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首页> 外文期刊>Angewandte Chemie >Economizing on Precious Metals in Three-Way Catalysts: Thermally Stable and Highly Active Single-Atom Rhodium on Ceria for NO Abatement under Dry and Industrially Relevant Conditions**
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Economizing on Precious Metals in Three-Way Catalysts: Thermally Stable and Highly Active Single-Atom Rhodium on Ceria for NO Abatement under Dry and Industrially Relevant Conditions**

机译:在三元催化剂中节省贵金属:在干燥和工业相关条件下无减排的热稳态和高活跃的单原子铑**

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We show for the first time that atomically dispersed Rh cations on ceria, prepared by a high-temperature atom-trapping synthesis, are the active species for the (CO+NO) reaction. This provides a direct link with the organometallic homogeneous Rh-I complexes capable of catalyzing the dry (CO+NO) reaction. The thermally stable Rh cations in 0.1 wt % Rh-1/CeO2 achieve full NO conversion with a turn-over-frequency (TOF) of around 330 h(-1) per Rh atom at 120 degrees C. Under dry conditions, the main product above 100 degrees C is N-2 with N2O being the minor product. The presence of water promotes low-temperature activity of 0.1 wt % Rh-1/CeO2. In the wet stream, ammonia and nitrogen are the main products above 120 degrees C. The uniformity of Rh ions on the support, allows us to detect the intermediates of (CO+NO) reaction via IR measurements on Rh cations on zeolite and ceria. We also show that NH3 formation correlates with the water gas shift (WGS) activity of the material and detect the formation of Rh hydride species spectroscopically.
机译:我们首次表明,通过高温原子捕获合成法制备的原子分散在氧化铈上的Rh阳离子是(CO+NO)反应的活性物种。这提供了与能够催化干(CO+NO)反应的有机金属均相Rh-I络合物的直接连接。0.1 wt%Rh-1/CeO2中的热稳定Rh阳离子实现完全NO转化,在120℃时,每个Rh原子的翻转频率(TOF)约为330 h(-1)。在干燥条件下,100℃以上的主要产物为N-2,N2O为次要产物。水的存在促进了0.1 wt%Rh-1/CeO2的低温活性。在湿流中,氨和氮是120℃以上的主要产物。载体上铑离子的均匀性使我们能够通过对沸石和氧化铈上铑离子的红外测量来检测(CO+NO)反应的中间产物。我们还表明,NH3的形成与材料的水-气转换(WGS)活性相关,并通过光谱检测Rh氢化物物种的形成。

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