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High-pressure X-ray photoelectron spectroscopy of palladium model hydrogenation catalysts. Part 2: Hydrogenation of trans-2-pentene on palladium

机译:钯模型加氢催化剂的高压X射线光电子能谱。第2部分:反式-2-戊烯在钯上的氢化

摘要

We have performed the first “high-pressure” X-ray photoelectron spectroscopy (XPS) study on the palladium, hydrogen, and olefin (trans-2-pentene) system to gain better insight into the hydrogenation reaction. We report here data collected with the use of a Pd(111) single crystal and a polycrystalline foil. Hydrogenation was observed on polycrystalline foil (RT and 373 K) but not on Pd(111) single crystal, as revealed by on-line mass spectrometry. We observed the reaction in the presence of a huge amount of carbon (up to 73%) in the information depth of XPS. Mainly graphite was present on Pd(111), whereas other components, C–H and C–Pd, were also formed on the foil to a much greater extent. C–Pd characterizes a carbon species in the interaction with palladium, whereas C–H represents hydrogenated carbon, including chemisorbed species. The d-band of the foil showed a remarkable upshift toward EFERMI compared with Pd(111). We concluded that the differences found in the valence and the C1s region are indicators of different electronic structures that contribute to the variation in activity. The palladium foil lost its activity at an elevated temperature (523 K), most probably because of desorption of hydrogen. From additional UPS measurements, we concluded that trans-2-pentene is hydrogenated in σ-bonded chemisorption modus, at least in UHV conditions.
机译:我们已经对钯,氢和烯烃(反式-2-戊烯)系统进行了首次“高压” X射线光电子能谱(XPS)研究,以更好地了解氢化反应。我们在这里报告使用Pd(111)单晶和多晶箔收集的数据。在线质谱法显示,在多晶箔(RT和373 K)上观察到氢化,但在Pd(111)单晶上未观察到氢化。我们在XPS的信息深度中观察到在存在大量碳(高达73%)的情况下的反应。 Pd(111)上主要存在石墨,而箔上还形成了其他成分C–H和C–Pd。 C–Pd在与钯相互作用的过程中表征碳原子,而C–H则代表氢化碳,包括化学吸附物种。与Pd(111)相比,箔的d带显示出明显的向EFERMI的上移。我们得出的结论是,在化合价和C1s区域中发现的差异是不同电子结构的指示,这些电子结构有助于活动的变化。钯箔在高温(523 K)下失去活性,这很可能是由于氢的脱附。根据其他UPS测量,我们得出结论,至少在特高压条件下,反式2-戊烯以σ键化学吸附方式氢化。

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