Subsurface Stabilization of Interstitial Pt Atoms on CeO <sub>2</sub> (111): Rethinking Single‐Atom Catalyst Architectures

S Shuang Chen (Kuang Yaming Honors School) Z Zairan Yu (Institut Für Funktionelle Grenzflächen (IFG) Karlsruher Institut für Technologie (KIT) Eggenstein‐Leopoldshafen Deutschland) J Junjun Wang J Jelena Jelic (Institute of Catalysis Research and Technology (IKFT) Karlsruhe Institute of Technology (KIT) Eggenstein‐Leopoldshafen Germany) W Wangtao Li (Institut Für Funktionelle Grenzflächen (IFG) Karlsruher Institut für Technologie (KIT) Eggenstein‐Leopoldshafen Deutschland) F Felix Studt (Institute of Catalysis Research and Technology (IKFT) Karlsruhe Institute of Technology (KIT) Eggenstein‐Leopoldshafen Germany) Y Yuemin Wang (Institute of Functional Interfaces, IFG, Karlsruhe Institute of Technology) C Christof Wöll (Institute of Functional Interfaces, IFG, Karlsruhe Institute of Technology)

Abstract

ABSTRACT Single‐atom catalysts (SACs) offer maximal efficiency by stabilizing isolated metal atoms on oxidic supports. Platinum on cerium oxide (CeO 2 ) is a key SAC system, where adsorbed CO typically exhibits red‐shifted vibrational modes due to Pt back‐donation. Using polarization‐resolved IR spectroscopy on Pt‐deposited CeO 2 (111) single‐crystal surfaces, we do not observe CO vibrational bands below 2140 cm −1 at low coverages, indicating that the surface‐bound Pt atoms are not present in detectable amounts. DFT calculations demonstrate that this unexpected observation is consistent with Pt atoms occupying buried interstitial sites. Such subsurface single‐atom sites, not considered in previous studies, are thermodynamically favored at low coverages, adopt an unusual oxidation state, and are inaccessible to direct CO binding. Our findings challenge the prevailing assumption that single atoms remain surface‐bound and highlight the critical role of subsurface interstitial species, prompting a rethinking of how active sites in single‐atom catalysts are stabilized on reducible oxides.

Article Details

Volume / Issue Vol. 65, Issue 25
Published June 15, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (8)

S

Shuang Chen

Kuang Yaming Honors School

Z

Zairan Yu

Institut Für Funktionelle Grenzflächen (IFG) Karlsruher Institut für Technologie (KIT) Eggenstein‐Leopoldshafen Deutschland

J

Junjun Wang

J

Jelena Jelic

Institute of Catalysis Research and Technology (IKFT) Karlsruhe Institute of Technology (KIT) Eggenstein‐Leopoldshafen Germany

W

Wangtao Li

Institut Für Funktionelle Grenzflächen (IFG) Karlsruher Institut für Technologie (KIT) Eggenstein‐Leopoldshafen Deutschland

F

Felix Studt

Institute of Catalysis Research and Technology (IKFT) Karlsruhe Institute of Technology (KIT) Eggenstein‐Leopoldshafen Germany

Y

Yuemin Wang

Institute of Functional Interfaces, IFG, Karlsruhe Institute of Technology

C

Christof Wöll

Institute of Functional Interfaces, IFG, Karlsruhe Institute of Technology