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The decomposition of nitrogen oxides on Pd(110); An angular and velocity distribution study of desorbing product

机译:Pd(110)上的氮氧化物的分解; 解吸产品的角速度分布研究

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Angular and velocity distributions of desorbing N_2,N_2O, and NO molecules were studied in the decomposition ofNO and N_2O on a palladium (110) surface at both thermaldesorption and steady state conditions by means of a cross-correlation time-of-flight techniques. In TD measurements, theresults of N_2 desorption were very similar in bothdecompositions of NO and N_2O although the desorption peakedround 500 K in the NO decomposition, and below 180 K in theother. Desorbing N_2 molecules are characterized by a sharp off-normal emission in a plane along the (001) direction and thehyperthermal velocity with the mean translational energy of 0.47-0.22 eV. The desorption of N_2O showed a cosine angulardistribution and a Maxwellian velocity distribution at the surfacetemperature, indicating a complete accommodation with thesurface. Similar dosorption dynamics was confirmed in SSmeasurement. It is concluded that N_2O produced on the surfaceis the intermediate for the decomposition of NO on Pd (110).
机译:通过互相关的飞行时间技术在钯(110)表面上,在钯(110)表面上的分解中进行了解吸N_2,N_2O和NO分子的角度和速度分布。在TD测量中,在NO和N_2O的两种分解中,N_2解吸的结果非常相似,尽管未分解的解吸峰被除去500k,但在The Hother下降到180 k以下。解吸N_2分子的特征在于沿(001)方向的平面中的急剧脱离正常发射,具有0.47-0.22eV的平均平移能量的平均翻译能量。 N_2O的解吸显示余弦的令人吻合分布和在表面温度下的最大珀斯速度分布,表明具有ThesFach的完整住宿。在SSMearement中确认了类似的加热动态。得出结论,在表面上产生的N_2O在Pd(110)上的分解中的中间体。

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