Destabilization of Single‐Atom Catalysts: Characterization, Mechanisms, and Regeneration Strategies

Z Zhiquan Lang (Institute for Energy Research School of Chemistry and Chemical Engineering Jiangsu University Zhenjiang 212003 P. R. China) X Xixi Wang S Sobia Jabeen (Institute for Energy Research School of Chemistry and Chemical Engineering Jiangsu University Zhenjiang 212003 P. R. China) Y Yuanyuan Cheng N Naiyun Liu (Institute for Energy Research School of Chemistry and Chemical Engineering Jiangsu University Zhenjiang 212003 P. R. China) Z Zhenhui Liu (Jiangsu Key Laboratory of Electrochemical Energy Storage Technologies, College of Material Science and Technology) T Tao Gan Z Zechao Zhuang (Department of Chemistry) H Haitao Li D Dingsheng Wang (Department of Chemistry)

Abstract

Abstract Numerous in situ characterization studies have focused on revealing the catalytic mechanisms of single‐atom catalysts (SACs), providing a theoretical basis for their rational design. Although research is relatively limited, the stability of SACs under long‐term operating conditions is equally important and a prerequisite for their real‐world energy applications, such as fuel cells and water electrolyzers. Recently, there has been a rise in in situ characterization studies on the destabilization and regeneration of SACs; however, timely and comprehensive summaries that provide the catalysis community with valuable insights and research directions are still lacking. This review summarizes recent advances in the destabilization mechanisms and regeneration strategies of SACs, specifically highlighting various state‐of‐the‐art characterization techniques employed in the studies. The factors that induce destabilization in SACs are identified by discussing the failure of active sites, coordination environments, supports, and reaction conditions under long‐term operating scenarios. Next, the primary regeneration strategies for SACs are introduced, including redispersion, surface poison desorption, and exposure of subsurface active sites. Additionally, the advantages and limitations of both in situ and ex situ characterization techniques are discussed. Finally, future research directions are proposed, aimed at constructing structure–stability relationships and guiding the design of more stable SACs.

Article Details

Volume / Issue Vol. 37, Issue 9
Published March 01, 2025
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (10)

Z

Zhiquan Lang

Institute for Energy Research School of Chemistry and Chemical Engineering Jiangsu University Zhenjiang 212003 P. R. China

X

Xixi Wang

S

Sobia Jabeen

Institute for Energy Research School of Chemistry and Chemical Engineering Jiangsu University Zhenjiang 212003 P. R. China

Y

Yuanyuan Cheng

N

Naiyun Liu

Institute for Energy Research School of Chemistry and Chemical Engineering Jiangsu University Zhenjiang 212003 P. R. China

Z

Zhenhui Liu

Jiangsu Key Laboratory of Electrochemical Energy Storage Technologies, College of Material Science and Technology

T

Tao Gan

Z

Zechao Zhuang

Department of Chemistry

H

Haitao Li

D

Dingsheng Wang

Department of Chemistry