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April 27, 2026MATERIALS TRANSACTIONS0 citations

Chemical States and Catalytic Properties of Icosahedral Al-Pd-Ru Quasicrystal and Its Approximants

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TSTaisei SusakiTohoku UniversityMAMakito AoyamaTohoku UniversityTFTakeru FukushimaTohoku University

Key Points

  • The research aims to explore the chemical states and catalytic properties of Al-Pd-Ru quasicrystals and their approximants.
  • Investigated chemical states using hard X-ray photoemission spectroscopy
  • Evaluated catalytic properties for hydrogenating acetylene across different alloys
  • Compared structural characteristics of the alloys with pure Pd
  • Chemical states across Al71Pd19Ru10, Al72Pd16.4Ru11.6, and Al70.4Pd14.7Ru14.9 alloys were similar but differed from pure Pd
  • Catalytic activity was influenced more by local surface structure than by overall crystal structure
  • Significant variations were observed in performance during the semi-hydrogenation of acetylene

Abstract

The chemical states of Al71Pd19Ru10, an icosahedral Al-Pd-Ru quasicrystal, and of the approximants Al72Pd16.4Ru11.6 and Al70.4Pd14.7Ru14.9 were investigated using hard X-ray photoemission spectroscopy. Their catalytic properties for the hydrogenation of acetylene were also evaluated. Each of these Al-Pd-Ru alloys comprised mini-Bergman and pseudo-Mackay clusters but had varying structures as a consequence of differences in the arrangement of these clusters. The chemical states of the constituent elements and the acetylene hydrogenation characteristics were similar among these alloys. However, all three materials were significantly different from pure Pd, especially with regard to their chemical shift and performance during the semi-hydrogenation of acetylene. The catalytic activity of such alloys was found to be determined by the local surface structure rather than the crystal structure and/or the arrangement of the constituent clusters.

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Cite This Study

Susaki et al. (2026) studied this question.

synapsesocial.com/papers/69eefcf4fede9185760d3b7chttps://doi.org/10.2320/matertrans.mt-md2025001
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