Controlling Heterogeneous Catalysis With Subsurface Oxygen

A Arved C. Dorst (Institute of Physical Chemistry University of Göttingen Göttingen Germany) Z ZhiKai Jiang (State Key Laboratory of Precision and Intelligent Chemistry, Department of Chemical Physics, University of Science and Technology of China 1 , Hefei, Anhui 230026,) M Maxwell Gillum (Department of Chemistry & Biochemistry Loyola University Chicago Chicago Illinois USA) R Rasika E. A. Dissanayake (Institute of Physical Chemistry University of Göttingen Göttingen Germany) B Bin Jiang D Daniel R. Killelea (Department of Chemistry & Biochemistry Loyola University Chicago Chicago Illinois USA) T Tim Schäfer (Max Planck Institute for Multidisciplinary Sciences 2 , Am Faßberg 11, Göttingen 37077,)

Abstract

ABSTRACT Rhodium surfaces play a crucial role in heterogeneous catalysis, driving extensive research on their reactivity. In particular, CO oxidation is of great interest, where different oxygen species at the surface can influence catalytic activity. Under certain conditions, rhodium can also host sub‐surface oxygen species, further affecting reaction dynamics. In this work, we combine molecular beam surface scattering, ion imaging, and ultra‐high vacuum techniques to investigate the impact of subsurface oxygen on CO oxidation on single‐crystal Rh surfaces. When oxidizing CO at the (2 1)‐O adlayer without subsurface oxygen, we observe hyperthermal velocity distributions of desorbing CO 2 , indicating significant energy release along the translational coordinate directly from the transition state. In contrast, subsurface oxygen induces thermal velocity distributions. DFT calculations indicate the formation of a chemisorption state in presence of subsurface oxygen that is energetically favored and transiently traps product CO 2 long enough for thermalization.

Article Details

Volume / Issue Vol. 65, Issue 19
Published May 04, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (7)

A

Arved C. Dorst

Institute of Physical Chemistry University of Göttingen Göttingen Germany

Z

ZhiKai Jiang

State Key Laboratory of Precision and Intelligent Chemistry, Department of Chemical Physics, University of Science and Technology of China 1 , Hefei, Anhui 230026,

M

Maxwell Gillum

Department of Chemistry & Biochemistry Loyola University Chicago Chicago Illinois USA

R

Rasika E. A. Dissanayake

Institute of Physical Chemistry University of Göttingen Göttingen Germany

B

Bin Jiang

D

Daniel R. Killelea

Department of Chemistry & Biochemistry Loyola University Chicago Chicago Illinois USA

T

Tim Schäfer

Max Planck Institute for Multidisciplinary Sciences 2 , Am Faßberg 11, Göttingen 37077,