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Monitoring the Morphological Changes of Skeleton-PtCo Electrocatalyst during PEMFC Start-Up/Shut-Downprobed by in situ WAXS and SAXS

  • Marek Janssen
  • , Jakub Drnec
  • , Isaac Martens
  • , Jonathan Quinson
  • , Rebecca Pittkowski
  • , Daesung Park
  • , Philipp Weber
  • , Matthias Arenz
  • , Mehtap Oezaslan*
  • *Corresponding author for this work

Research output: Contribution to journalArticleResearchpeer review

Abstract

Advanced in situ analyses are indispensable for comprehending the catalyst aging mechanisms of Pt-based PEM fuel cell cathode materials, particularly during accelerated stress tests (ASTs). In this study, a combination of in situ small-angle and wide-angle X-ray scattering (SAXS & WAXS) techniques were employed to establish correlations between structural parameters (crystal phase, quantity, and size) of a highly active skeleton-PtCo (sk-PtCo) catalyst and their degradation cycles within the potential range of the start-up/shut-down (SUSD) conditions. Despite the complex case of the sk-PtCo catalyst comprising two distinct fcc alloy phases, our complementary techniques enabled in situ monitoring of structural changes in each crystal phase in detail. Remarkably, the in situ WAXS measurements uncover two primary catalyst aging processes, namely the cobalt depletion (regime I) followed by the crystallite growth via Ostwald ripening and/or particle coalescence (regime II). Additionally, in situ SAXS data reveal a continuous size growth over the AST. The Pt-enriched shell thickening based on the Co depletion within the first 100 SUSD cycles and particle growth induced by additional potential cycles were also collaborated by ex situ STEM-EELS. Overall, our work shows a comprehensive aging model for the sk-PtCo catalyst probed by complementary in situ WAXS and SAXS techniques.

Original languageEnglish
Article numbere202400303
JournalCHEMSUSCHEM
Volume17
Issue number17
E-pub ahead of print20 Mar 2024
DOIs
Publication statusPublished - 9 Sept 2024
Externally publishedYes

Keywords

  • accelerated stress test (AST)
  • oxygen reduction reaction (ORR)
  • skeleton-PtCo nanoparticles (NPs)
  • small-angle X-ray scattering (SAXS)
  • start-up/shut-down (SUSD)
  • wide-angle X-ray scattering (WAXS)

ASJC Scopus subject areas

  • Environmental Chemistry
  • General Chemical Engineering
  • General Materials Science
  • General Energy
  • QuantumFrontiers: Cluster of Excellence 2123/1: Light and Matter at the Quantum Frontier

    Schmidt, P. O. (Principal Investigator), Ospelkaus-Schwarzer, S. (Principal Investigator), Chichkov, B. (Principal Investigator), Danzmann, K. (Principal Investigator), Ertmer, W. (Principal Investigator), Hammerer, K. J. (Principal Investigator), Haug, R. (Principal Investigator), Heinzel, G. (Principal Investigator), Heurs, M. (Principal Investigator), Klempt, C. (Principal Investigator), Kroker, S. (Principal Investigator), Lisdat, C. (Principal Investigator), Mehlstäubler, T. (Principal Investigator), Müller, J. (Principal Investigator), Ospelkaus, C. (Principal Investigator), Rasel, E. M. (Principal Investigator), Recher, P. (Principal Investigator), Santos, L. S. (Principal Investigator), Schilling, M. (Principal Investigator), Schlickum, U. (Principal Investigator), Schumacher, H. W. (Principal Investigator), Surzhykov, A. (Principal Investigator), Waag, A. (Principal Investigator), Werner, R. (Principal Investigator) & Willke, B. (Principal Investigator)

    1 Jan 201931 Dec 2025

    Project: Research

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