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Supporting monolayer Pt on W(110) and C/W(110):Modification effects on the reaction pathways of cyclohexene

机译:在W(110)和C / W(110)上支撑单层Pt:修饰对环己烯反应路径的影响

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The decomposition,dehydrogenation,self-hydrogenation,and hydrogenation of cyclohexene were used as probe reactions to determine the effects of supporting monolayer Pt on W(l 10) and C/W(110) surfaces.The reaction pathways were studied using temperature-programmed des-orption (TPD) and high-resolution electron energy loss spectroscopy (HREELS).On the clean and carbon-modified W(l 10) surfaces,the dominant reaction pathway of cyclohexene is the complete decomposition to produce hydrogen and atomic carbon.Monolayer Pt-modification of the W(110) and C/W(110) surfaces reduces the complete decomposition and enhances the selectivity toward the dehydrogenation of cyclohexene to produce gas phase benzene.More importantly,unlike previous studies of supporting monolayer Pt on Ni and Co surfaces,neither self-hydrogenation of cyclohexene nor hydrogenation of cyclohexene with coadsorbed hydrogen is detected on the monolayer Pt-modined W(l 10) and C/W(110) surfaces.The comparison is consistent with our previous density functional theory (DFT) modeling of monolayer Pt on different substrates,confirming that the chemical properties of supported Pt vary significantly on different substrates.
机译:以环己烯的分解,脱氢,自加氢和加氢为探针反应,确定单层铂对W(l 10)和C / W(110)表面的影响。吸附(TPD)和高分辨率电子能量损失谱(HREELS)。在清洁和碳改性的W(l 10)表面上,环己烯的主要反应途径是完全分解产生氢和原子碳。 W(110)和C / W(110)表面的Pt改性减少了完全分解并增强了对环己烯脱氢以生产气相苯的选择性。更重要的是,与先前关于在Ni和Co上负载单层Pt的研究不同在单层Pt修饰的W(l 10)和C / W(110)表面上均未检测到环己烯的自氢化或共吸附氢对环己烯的氢化。该比较与o我们先前在不同基质上对单层Pt进行密度泛函理论(DFT)建模,证实了在不同基质上负载的Pt的化学性质差异很大。

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