Abstract <p>The interaction of palladium deposited by vacuum evaporation onto the surface of highly oriented pyrolytic graphite (HOPG) with hydrogen was studied using X-ray photoelectron spectroscopy (XPS). Graphite was preliminarily subjected to oxidative treatment including the stages of etching by Ar<sup>+</sup> ions and exposure to air at room temperature. Before contact with hydrogen, the spectrum of the Pd/O-HOPG sample contained two O 1<i>s</i> lines with binding energies <i>E</i><sub>b</sub>&#xa0;∼ 530.5 and ∼532.5&#xa0;eV belonging to two types of oxygen atoms in the functional groups on the surface of the carbon support. After interaction with H<sub>2</sub> at a temperature of 150°C and a pressure of 20&#xa0;mbar, the line with <i>E</i><sub>b</sub> ≈ 530.5&#xa0;eV disappeared, probably, due to the reduction of the corresponding functional groups. Under these conditions, the surface oxygen was retained in the oxidized graphite sample without deposited palladium (O-HOPG), which indicated the participation of palladium particles in the reduction of oxygen-containing groups. Apparently, dissociation of hydrogen molecules occurred on the palladium surface, followed by spillover of the resulting H atoms onto the carbon support.</p>

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Interaction of Hydrogen with Palladium Supported onto an Oxidized Graphite Surface

  • M. Yu. Smirnov,
  • A. V. Kalinkin,
  • V. I. Bukhtiyarov

摘要

Abstract

The interaction of palladium deposited by vacuum evaporation onto the surface of highly oriented pyrolytic graphite (HOPG) with hydrogen was studied using X-ray photoelectron spectroscopy (XPS). Graphite was preliminarily subjected to oxidative treatment including the stages of etching by Ar+ ions and exposure to air at room temperature. Before contact with hydrogen, the spectrum of the Pd/O-HOPG sample contained two O 1s lines with binding energies Eb ∼ 530.5 and ∼532.5 eV belonging to two types of oxygen atoms in the functional groups on the surface of the carbon support. After interaction with H2 at a temperature of 150°C and a pressure of 20 mbar, the line with Eb ≈ 530.5 eV disappeared, probably, due to the reduction of the corresponding functional groups. Under these conditions, the surface oxygen was retained in the oxidized graphite sample without deposited palladium (O-HOPG), which indicated the participation of palladium particles in the reduction of oxygen-containing groups. Apparently, dissociation of hydrogen molecules occurred on the palladium surface, followed by spillover of the resulting H atoms onto the carbon support.