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- W2913086711 abstract "Abstract An interface stabilized SnO x /Pt(110) nano‐oxide characterized by a c(2 × 4) surface reconstruction is prepared and characterized by low‐energy electron diffraction (LEED), synchrotron radiation photoemission spectroscopy (SRPES), and scanning tunneling microscopy (STM). Based on the experimental data, atomic models for the nano‐oxide are proposed and then validated by comparing the experimental results with the outcome of first‐principle calculations. The reactivity of the nano‐oxide toward CO is investigated, obtaining that the c(2 × 4) reconstruction efficiently oxidizes CO to CO 2 . The SnO x nano‐oxide on the Pt(110) surface can act as a reservoir for oxygen that can diffuse on the adjacent Pt areas where it oxidizes CO. This spillover effect endows the SnO x /Pt(110) system with enhanced tolerance to CO poisoning." @default.
- W2913086711 created "2019-02-21" @default.
- W2913086711 creator A5014379900 @default.
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- W2913086711 creator A5079336887 @default.
- W2913086711 creator A5079581026 @default.
- W2913086711 creator A5083668074 @default.
- W2913086711 date "2019-01-30" @default.
- W2913086711 modified "2023-09-26" @default.
- W2913086711 title "Multiple Reaction Paths for CO Oxidation on a 2D SnO<i><sub>x</sub></i>Nano‐Oxide on the Pt(110) Surface: Intrinsic Reactivity and Spillover" @default.
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- W2913086711 doi "https://doi.org/10.1002/admi.201801874" @default.
- W2913086711 hasPublicationYear "2019" @default.
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