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In situ imaging of Cu2O under reducing conditions: Formation of metallic fronts by mass transfer

  • Ashleigh E. Baber
  • , Fang Xu
  • , Filip Dvorak
  • , Kumudu Mudiyanselage
  • , Markus Soldemo
  • , Jonas Weissenrieder
  • , Sanjaya D. Senanayake
  • , Jerzy T. Sadowski
  • , José A. Rodriguez
  • , Vladimír Matolín
  • , Michael G. White
  • , Darío J. Stacchiola
  • Brookhaven National Laboratory
  • Stony Brook University
  • Charles University
  • KTH Royal Institute of Technology

Research output: Contribution to journalArticlepeer-review

89 Scopus citations

Abstract

Active catalytic sites have traditionally been analyzed based on static representations of surface structures and characterization of materials before or after reactions. We show here by a combination of in situ microscopy and spectroscopy techniques that, in the presence of reactants, an oxide catalyst's chemical state and morphology are dynamically modified. The reduction of Cu 2O films is studied under ambient pressures (AP) of CO. The use of complementary techniques allows us to identify intermediate surface oxide phases and determine how reaction fronts propagate across the surface by massive mass transfer of Cu atoms released during the reduction of the oxide phase in the presence of CO. High resolution in situ imaging by AP scanning tunneling microscopy (AP-STM) shows that the reduction of the oxide films is initiated at defects both on step edges and the center of oxide terraces.

Original languageEnglish
Pages (from-to)16781-16784
Number of pages4
JournalJournal of the American Chemical Society
Volume135
Issue number45
DOIs
StatePublished - Nov 13 2013

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