4.6 Article

Bimetallic Pd-Au/Highly Oriented Pyrolytic Graphite Catalysts: from Composition to Pairwise Parahydrogen Addition Selectivity

期刊

JOURNAL OF PHYSICAL CHEMISTRY C
卷 122, 期 32, 页码 18588-18595

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.jpcc.8b06281

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资金

  1. Russian Science Foundation [14-23-00146, 17-73-20030]
  2. SB RAS integrated research program [0333-2018-0006/II.1.13]
  3. Russian Science Foundation [17-23-00011, 17-73-20030] Funding Source: Russian Science Foundation

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The model Pd and Au mono- and bi-metallic (Pd-Au) catalysts were prepared using vapor deposition of metals (Au and/or Pd) under ultrahigh vacuum conditions on the defective highly oriented pyrolytic graphite (HOPG) surface. The model catalysts were investigated using the X-ray photoelectron spectroscopy and scanning tunneling microscopy at each stage of the preparation procedure. For the preparation of bimetallic catalysts, different procedures were used to get different structures of PdAu particles (Au-shell -Pd-core or alloyed). All prepared catalysts showed rather narrow particles size distribution with an average particles size in the range of 4-7 nm. Parahydrogen-enhanced nuclear magnetic resonance spectroscopy was used as a tool for the investigation of Pd-Au/ HOPG, Pd/HOPG, and Au/HOPG model catalysts in propyne hydrogenation. In contrast to Au sample, Pd, PdAualloy, and Au-shell-Pd-core samples were shown to have catalytic activity in propyne conversion, and pairwise hydrogen addition routes were observed. Moreover, bimetallic samples demonstrated the 2to 5-fold higher activity in pairwise hydrogen addition in comparison to the monometallic Pd sample. It was shown that the structures of bimetallic Pd-Au particles supported on HOPG strongly affected their activities and/or selectivities in propyne hydrogenation reaction: the catalyst with the Au-shell-Pd-core structure demonstrated higher pairwise selectivity than that with the PdAu(alloy )structure. Thus, the reported approach can be used as an effective tool for the synergistic effects investigations in hydrogenation reactions over model bimetallic Pd-Au catalysts, where the active component is supported on a planar support.

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