Theoretical insights into single-atom catalysts

Single-atom catalysts (SACs) with atomically dispersed metals have emerged as a new class of heterogeneous catalysts and have attracted considerable interest because they offer 100% metal atom utilization and show excellent catalytic behavior compared with traditionally supported nano-particles. How...

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Veröffentlicht in:Chemical Society reviews 2020-11, Vol.49 (22), p.8156-8178
Hauptverfasser: Li, Lulu, Chang, Xin, Lin, Xiaoyun, Zhao, Zhi-Jian, Gong, Jinlong
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Chang, Xin
Lin, Xiaoyun
Zhao, Zhi-Jian
Gong, Jinlong
description Single-atom catalysts (SACs) with atomically dispersed metals have emerged as a new class of heterogeneous catalysts and have attracted considerable interest because they offer 100% metal atom utilization and show excellent catalytic behavior compared with traditionally supported nano-particles. However, it is challenging to explore the active sites and catalytic mechanisms of SACs through common characterization methods due to the isolated single atoms. Therefore, employing theoretical calculations to determine the nature of SACs' active sites and the reaction mechanisms is particularly meaningful. This paper describes the nature of SACs by summarizing the diverse applications and properties of SACs, which starts from computational simulation on a couple of important applications of SACs. Then the distinctive and fundamental properties of SACs are discussed. At last, the challenges and future perspectives of computational calculations for SACs are outlined. Schematic diagram of theoretical models and applications of single atom catalysts. A review on the theoretical models, intrinsic properties, and the related application of SACs.
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subjects Mathematical analysis
Nanoparticles
Reaction mechanisms
Single atom catalysts
title Theoretical insights into single-atom catalysts
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