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trans-1,2-dichloroethene on Cu50Pd50(110) alloy surface: dynamical changes in the adsorption, reaction, and surface segregation

机译:Cu50Pd50(110)合金表面上的反式1,2-二氯乙烯:吸附,反应和表面偏析的动态变化

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The adsorption and reaction of trans-1,2-dichloroethene on CuPd(110) have been studied using molecular beam adsorption reaction, temperature-programmed desorption, reflection absorption infrared, high-resolution electron energy loss, and X-ray photoelectron spectroscopies. Below 165 K, the molecules adsorb intact at all coverages with their molecular planes orientated largely parallel to the metal surface. Above 165 K, decomposition is observed initially on adsorption, but is limited by availability of surface sites and stablisation effects of coadsorbed Cl. Between 300 and 350 K the main desorbing decomposition products are H-2 and C2H2, while only H-2 is produced between 350 and 675 K. Above 675 K evolution of HCl is observed. The decomposition of the hydrocarbon skeleton occurs mainly at Pd sites, while dechlorination is catalysed at Cu sites with Cl preferentially binding to the Cu atoms. This leads to dynamic changes in surface composition of the alloy with segregation of underlying Cu atoms to the surface that scavenge the Cl atoms and thus help to keep the Pd sites Cl free. Crown Copyright (C) 2004 Published by Elsevier Inc. All rights reserved.
机译:利用分子束吸附反应,程序升温解吸,红外反射吸收,高分辨率电子能量损失和X射线光电子能谱研究了反式1,2-二氯乙烯在CuPd(110)上的吸附和反应。低于165 K,分子在所有覆盖范围内均完整吸收,其分子平面基本平行于金属表面。高于165 K时,最初在吸附时观察到分解,但受限于表面位点的可用性和共吸附Cl的稳定作用。在300至350 K之间,主要的解吸分解产物为H-2和C2H2,而在350至675 K之间仅产生H-2。在675 K以上观察到HCl的逸出。碳氢化合物骨架的分解主要发生在Pd位,而在Cl位优先结合Cu原子的Cu位催化脱氯。这导致合金表面成分的动态变化,其中潜在的Cu原子偏析到清除Cl原子的表面,因此有助于保持Pd的Cl游离。 Crown版权所有(C)2004,由Elsevier Inc.出版。保留所有权利。

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