Metal Single‐Atom Materials: Unlocking the Future of Sustainable Energy and Environment in Automobiles

Y Yutang Yu (Engineering Research Center of Ministry of Education for Geological Carbon Storage and Low Carbon Utilization of Resources Beijing Key Laboratory of Materials Utilization of Nonmetallic Minerals and Solid Wastes National Laboratory of Mineral Materials School of Materials Science and Technology China University of Geosciences Beijing China) S Shuchen Tu (SCNU Environmental Research Institute Guangdong Provincial Key Laboratory of Chemical Pollution and Environmental Safety and MOE Key Laboratory of Theoretical Chemistry of Environment School of Environment South China Normal University Guangzhou 510006 China) Z Zijian Zhu (School of Psychology, Shaanxi Normal University) T Tianyi Ma (Centre for Atomaterials and Nanomanufacturing, School of Science, Royal Melbourne Institute of Technology University) S Seong‐Ju Hwang (Department of Materials Science and Engineering College of Engineering Yonsei University Seoul 03722 Republic of Korea) H Hongwei Huang

Abstract

Abstract Automobiles are constantly evolving with advancements in green energy and environmental technologies, e.g., sustainable energy devices, green synthesis, carbon utilization, catalytic exhaust conversion, etc. Therefore, the automotive field has become a complex system engineering, which requires the coordination of these sub‐fields for the future vehicle industry. Developing these sub‐fields is inseparable from the research and application of novel nanomaterials. Among the nanomaterials that have emerged in recent years, metal single‐atom materials (MSAMs) have received particular attention due to their ultrahigh host atom utilization rate and abundant adjustability. MSAMs will likely accelerate vehicle development, which is mainly reflected in transforming energy structures and innovating specific green technologies. Herein, we first concluded the relationship between nanomaterials and sub‐applications of automobiles. Then, the progress of large‐scale preparation of MSAMs and their potential applications in dominating automotive fields, including fuel production, power supply equipment, and exhaust treatment are systematically summarized. Finally, the possible contributions and impacts of MSAMs on the automotive field are presented. This review aims to provide a systematic summary of MSAMs applied in specific sustainable energy and environmental applications for vehicles, thus achieving the rational design and utilization of atomic‐scale modification on nanomaterials for developing a revolutionary automobile transportation system.

Article Details

Volume / Issue Vol. 37, Issue 38
Published September 01, 2025
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (6)

Y

Yutang Yu

Engineering Research Center of Ministry of Education for Geological Carbon Storage and Low Carbon Utilization of Resources Beijing Key Laboratory of Materials Utilization of Nonmetallic Minerals and Solid Wastes National Laboratory of Mineral Materials School of Materials Science and Technology China University of Geosciences Beijing China

S

Shuchen Tu

SCNU Environmental Research Institute Guangdong Provincial Key Laboratory of Chemical Pollution and Environmental Safety and MOE Key Laboratory of Theoretical Chemistry of Environment School of Environment South China Normal University Guangzhou 510006 China

Z

Zijian Zhu

School of Psychology, Shaanxi Normal University

T

Tianyi Ma

Centre for Atomaterials and Nanomanufacturing, School of Science, Royal Melbourne Institute of Technology University

S

Seong‐Ju Hwang

Department of Materials Science and Engineering College of Engineering Yonsei University Seoul 03722 Republic of Korea

H

Hongwei Huang