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July 13, 2021ACS Catalysis213 citations

Enhancement of the Oxygen Reduction Reaction Activity of Pt by Tuning Its d-Band Center via Transition Metal Oxide Support Interactions

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FAFūma AndoTGTakao GunjiTTToyokazu Tanabe

Key Points

  • To investigate whether transition metal oxide supports and mixed-metal oxide composites on carbon nanotubes can tune the platinum d-band center and enhance oxygen reduction reaction activity.
  • Synthesized thin single (Ti, Nb, Ta, W, Y, Zr) and mixed (TiNb, NbTa, TaW) transition metal oxides onto conductive cup-stacked carbon nanotubes (CSCNTs).
  • Photodeposited platinum nanoparticles onto oxide/CSCNT supports to create Pt/MOx/CSCNTs and Pt/M1M2Ox/CSCNTs electrocatalysts.
  • Measured oxygen reduction reaction (ORR) activity in 0.1 M HClO4 aqueous solution at 0.9 V vs RHE and correlated performance with Pt d-band center positions.
  • Pt d-band centers on MOx and M1M2Ox supports downshifted to values between −3.83 and −3.42 eV compared to reference Pt/carbon black at −3.39 eV.
  • ORR activity followed a volcano-type dependence on the Pt d-band center relative to the Fermi level across all tested oxide supports.
  • The Pt/TiNbOx (Ti:Nb atomic ratio 1:6.6)/CSCNTs catalyst exhibited maximal ORR activity at a d-band center of −3.59 eV, aligning with theoretical predictions of a ~0.2 eV downshift.

Abstract

The enhancement of the oxygen reduction reaction (ORR) activity of platinum nanoparticles (Pt NPs) using transition metal oxide (MOx, M = Ti, Nb, Ta, W, Y, and Zr) supports has been examined. To enable the use of transition metal oxides having low electric conductivity as supports, Pt NPs were formed on thin transition metal oxides formed on conducting cup-stacked carbon nanotubes (CSCNTs). Metal oxide composites (M1M2Ox) prepared from two types of transition metal (M1M2: TiNb, NbTa, and TaW) precursors were also used as supports. Pt NPs were photodeposited on MOx/CSCNTs and M1M2Ox/CSCNT supports, resulting in MOx/CSCNT- and M1M2Ox/CSCNT-supported Pt NP catalysts (abbreviated as Pt/MOx/CSCNTs and Pt/M1M2Ox/CSCNTs). Their ORR activities in 0.1 M HClO4 aqueous solution were found to significantly depend on the atomic ratio of M1 and M2 in M1M2Ox and the type of metal oxide support. A “volcano-type” dependence of the ORR activity (represented as the current density, mass activity, and specific activity at 0.9 V vs reversible hydrogen electrode (RHE)) on the Pt d-band center, relative to the Fermi level, was obtained in a series of the Pt/MOx/CSCNTs and Pt/M1M2Ox/CSCNT catalysts. It was found that the d-band center values (ranging from −3.83 to −3.42 eV) of Pt deposited on MOx/CSCNTs and M1M2Ox/CSCNT supports were lower than that (−3.39 eV) of the reference Pt/carbon black (CB) and that the Pt/TiNbOx (Ti/Nb = 1:6.6 in atomic ratio)/CSCNTs with a d-band center of −3.59 eV exhibited the maximum ORR activity, in agreement with the theoretical expectation that an ORR catalyst having a d-band center that is ca. 0.2 eV lower than that of Pt would have maximal ORR activity.

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Cite This Study

Ando et al. (2021) studied this question.

synapsesocial.com/papers/69d89910a5ecc596b5d17ca2https://doi.org/10.1021/acscatal.1c01868
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