Single‐Atom Alloys Materials for CO2 and CH4 Catalytic Conversion

The catalytic conversion of greenhouse gases CH4 and CO2 constitutes an effective approach for alleviating the greenhouse effect and generating valuable chemical products. However, the intricate molecular characteristics characterized by high symmetry and bond energies, coupled with the complexity o...

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Veröffentlicht in:Advanced materials (Weinheim) 2024-04, Vol.36 (16), p.e2311628-n/a
Hauptverfasser: He, Chengxuan, Gong, Yalin, Li, Songting, Wu, Jiaxin, Lu, Zhaojun, Li, Qixin, Wang, Lingzhi, Wu, Shiqun, Zhang, Jinlong
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Sprache:eng
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Zusammenfassung:The catalytic conversion of greenhouse gases CH4 and CO2 constitutes an effective approach for alleviating the greenhouse effect and generating valuable chemical products. However, the intricate molecular characteristics characterized by high symmetry and bond energies, coupled with the complexity of associated reactions, pose challenges for conventional catalysts to attain high activity, product selectivity, and enduring stability. Single‐atom alloys (SAAs) materials, distinguished by their tunable composition and unique electronic structures, confer versatile physicochemical properties and modulable functionalities. In recent years, SAAs materials demonstrate pronounced advantages and expansive prospects in catalytic conversion of CH4 and CO2. This review begins by introducing the challenges entailed in catalytic conversion of CH4 and CO2 and the advantages offered by SAAs. Subsequently, the intricacies of synthesis strategies employed for SAAs are presented and characterization techniques and methodologies are introduced. The subsequent section furnishes a meticulous and inclusive overview of research endeavors concerning SAAs in CO2 catalytic conversion, CH4 conversion, and synergy CH4 and CO2 conversion. The particular emphasis is directed toward scrutinizing the intricate mechanisms underlying the influence of SAAs on reaction activity and product selectivity. Finally, insights are presented on the development and future challenges of SAAs in CH4 and CO2 conversion reactions. This review outlines the challenges of CH4 and CO2 catalytic conversion and benefits offered by single‐atom alloy (SAAs). It details synthesis strategies and characterization methods and examines research on SAAs in CO2 and CH4 conversion, focusing on the intricate mechanisms affecting activity and product selectivity. Future prospects and challenges of SAAs in CH4 and CO2 conversion are also presented.
ISSN:0935-9648
1521-4095
DOI:10.1002/adma.202311628