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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Isothermal Kinetic Study of Nitric Oxide Adsorption and Decomposition on Pd(111) Surfaces:Molecular Beam Experiments
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Isothermal Kinetic Study of Nitric Oxide Adsorption and Decomposition on Pd(111) Surfaces:Molecular Beam Experiments

机译:一氧化氮在Pd(111)表面上吸附和分解的等温动力学研究:分子束实验

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摘要

The kinetics of NO adsorption and dissociation on Pd(111) surfaces and the NO sticking coefficient (S_(NO)) were probed by isothermal kinetic measurements between 300 and 525 K using a molecular beam instrument.NO dissociation and N_2 productions were observed in the transient state from 425 K and above on Pd(111) surfaces with selective nitrogen production.Maximum nitrogen production was observed between 475 and 500 K.It was found that,at low temperatures,between 300 and 350 K,molecular adsorption occurs with a constant initial S_(NO) of 0.5 until the Pd(111) surface is covered to about 70-80% by NO.Then S_(NO) rapidly decreases with further increasing NO coverage,indicating typical precursor kinetics.The dynamic adsorption - desorption equilibrium on Pd(111) was probed in modulated beam experiments below 500 K.CO titration experiments after NO dosing indicate the diffusion of oxygen into the subsurface regions and beginning surface oxidation at >475 K.Finally,we discuss the results with respect to the rate-limiting character of the different elementary steps of the reaction system.
机译:利用分子束仪通过等温动力学测量在300和525 K之间探测了Pd(111)表面上NO吸附和解离的动力学以及NO黏着系数(S_(NO)),并观察到NO的分解和N_2的产生。在Pd(111)表面上从425 K或更高的温度过渡到具有选择性氮的状态。在475和500 K之间观察到最大的氮产量。发现在低温下,在300和350 K之间,分子吸附保持恒定初始S_(NO)为0.5,直到Pd(111)表面被NO覆盖约70-80%,然后S_(NO)随着NO覆盖率的进一步增加而迅速降低,表明典型的前驱体动力学。在低于500 K的调制束实验中对Pd(111)进行了探测.NO滴定后的CO滴定实验表明氧气扩散到地下区域并在> 475 K处开始表面氧化。最后,我们讨论了结果w关于反应体系的不同基本步骤的限速特性。

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