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March 3, 2026Bulletin of the Chemical Society of Japan0 citationsOpen Access

Preparation and catalytic performance of supported gold hemi-nanoflowers for alcohol oxidation

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YJYuta JinoYKYusuke KuriharaSSShinji Saito

Key Points

  • Supported gold hemi-nanoflowers exhibit superior catalytic activity in alcohol oxidation, highlighting their effectiveness as nanocatalysts.
  • CeO2-supported Au nanocrystals showed higher acetophenone formation rates than α-Al2O3-supported counterparts, indicating the influence of support materials on catalytic performance.
  • Analysis of different Au nanocrystal morphologies revealed that acetophenone formation rates increased from spherical to nanoflower to hemi-nanoflower structures.
  • Findings suggest that hemi-nanoflower structures may serve as a novel avenue for enhancing catalytic efficiency in oxidative reactions.

Abstract

Abstract Anisotropic Au nanocrystals, such as nanoflowers, can be used as nanocatalysts with unique catalytic properties. The catalytic performance of supported Au nanocrystals is strongly affected by their support. However, supported hemi-anisotropic Au nanocrystals and their catalytic activity have not been investigated in detail. In this study, we prepared supported Au nanocatalysts with spherical, nanoflower, and hemi-nanoflower morphologies and examined their catalytic properties for the oxidation of 1-phenylethyl alcohol to acetophenone. CeO2-supported Au nanocrystals exhibited a higher acetophenone formation rate than that of α-Al2O3-supported Au nanocrystals with the same structure. In addition, the acetophenone formation rates of CeO2-supported Au nanocrystals increased in the order spherical nanoflower hemi-nanoflower structures. The obtained results indicate that supported Au hemi-nanoflowers can be used as highly efficient nanocatalysts.

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Cite This Study

Jino et al. (2026) studied this question.

synapsesocial.com/papers/69a75d4ac6e9836116a270dchttps://doi.org/10.1093/bulcsj/uoag013
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