- By:
- Chen, Hao; Sun, Yifan ; Yang, Shize; Wang, Hui ; Dmowski, Wojciech ; Egami, Takeshi ; Dai, Sheng
- Journal Name:
- Chemical Communications
- Page Number:
- 15056-15059
- Volume:
- 56
- Issue Number:
- 95
- Publication Date:
- December 27, 2023
- View DOI Listing:
- https://doi.org/10.1039/d0cc05860b
Abstract
Discovery of anti-sintering noble metal catalysts is challenging, as supported noble metal species tend to aggregate at high temperatures, leading to severely deteriorated catalytic performances. Here we show that 1 wt% of noble metal species including Au, Pd and Ru can be incorporated into high-entropy oxides (HEOs) through entropy stabilization at 900 °C in air. A reversible temperature-dependent dissolution–exsolution process is observed for Au-HEO. Further correlation with distinct CO oxidation capabilities demonstrates the potential to utilize the entropy effect to access self-regenerative catalysts for catalytic reactions.