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Reduction of (100)-Faceted CeO2 for Effective Pt Loading

  • Akira Yoko
  • , Haodong Wang
  • , Ko Furuya
  • , Daiki Takahashi
  • , Gimyeong Seong
  • , Takaaki Tomai
  • , Anatoly I. Frenkel
  • , Mitsuhiro Saito
  • , Kazutoshi Inoue
  • , Yuichi Ikuhara
  • , Tadafumi Adschiri
  • Tohoku University
  • Stony Brook University
  • United States Department of Energy
  • Suwon University
  • The University of Tokyo

Research output: Contribution to journalArticlepeer-review

11 Scopus citations

Abstract

Although the function and stability of catalysts are known to significantly depend on their dispersion state and support interactions, the mechanism of catalyst loading has not yet been elucidated. To address this gap in knowledge, this study elucidates the mechanism of Pt loading based on a detailed investigation of the interaction between Pt species and localized polarons (Ce3+) associated with oxygen vacancies on CeO2(100) facets. Furthermore, an effective Pt loading method was proposed for achieving high catalytic activity while maintaining the stability. Enhanced dispersibility and stability of Pt were achieved by controlling the ionic interactions between dissolved Pt species and CeO2 surface charges via pH adjustment and reduction pretreatment of the CeO2 support surface. This process resulted in strong interactions between Pt and the CeO2 support. Consequently, the oxygen-carrier performance was improved for CH4 chemical looping reforming reactions. This simple interaction-based loading process enhanced the catalytic performance, allowing the efficient use of noble metals with high performance and small loading amounts.

Original languageEnglish
Pages (from-to)5611-5620
Number of pages10
JournalChemistry of Materials
Volume36
Issue number11
DOIs
StatePublished - Jun 11 2024

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